JP2014034540A - Pyrazole amide derivative and pest control agent - Google Patents
Pyrazole amide derivative and pest control agent Download PDFInfo
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- JP2014034540A JP2014034540A JP2012175907A JP2012175907A JP2014034540A JP 2014034540 A JP2014034540 A JP 2014034540A JP 2012175907 A JP2012175907 A JP 2012175907A JP 2012175907 A JP2012175907 A JP 2012175907A JP 2014034540 A JP2014034540 A JP 2014034540A
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- -1 Pyrazole amide Chemical class 0.000 title claims abstract description 93
- 241000607479 Yersinia pestis Species 0.000 title claims abstract description 32
- 239000003795 chemical substances by application Substances 0.000 claims abstract description 42
- 125000004435 hydrogen atom Chemical group [H]* 0.000 claims abstract description 6
- 125000004430 oxygen atom Chemical group O* 0.000 claims abstract description 5
- 125000005843 halogen group Chemical group 0.000 claims abstract description 4
- 229910052717 sulfur Inorganic materials 0.000 claims abstract description 4
- 125000004434 sulfur atom Chemical group 0.000 claims abstract description 3
- 150000003839 salts Chemical class 0.000 claims description 26
- 238000000034 method Methods 0.000 claims description 22
- 239000004480 active ingredient Substances 0.000 claims description 15
- 239000002917 insecticide Substances 0.000 claims description 12
- 239000002689 soil Substances 0.000 claims description 10
- 241000124008 Mammalia Species 0.000 claims description 9
- 230000000895 acaricidal effect Effects 0.000 claims description 6
- 239000000642 acaricide Substances 0.000 claims description 6
- 239000003905 agrochemical Substances 0.000 claims description 6
- 125000002496 methyl group Chemical group [H]C([H])([H])* 0.000 claims description 5
- 241000271566 Aves Species 0.000 claims description 4
- 244000078703 ectoparasite Species 0.000 claims description 4
- 230000002262 irrigation Effects 0.000 claims description 4
- 238000003973 irrigation Methods 0.000 claims description 4
- 229910052801 chlorine Inorganic materials 0.000 claims description 3
- 125000001309 chloro group Chemical group Cl* 0.000 claims description 3
- 125000001495 ethyl group Chemical group [H]C([H])([H])C([H])([H])* 0.000 claims description 3
- 230000000749 insecticidal effect Effects 0.000 abstract description 9
- 150000001875 compounds Chemical class 0.000 description 133
- 238000006243 chemical reaction Methods 0.000 description 54
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- 239000000203 mixture Substances 0.000 description 37
- 238000012360 testing method Methods 0.000 description 34
- YMWUJEATGCHHMB-UHFFFAOYSA-N Dichloromethane Chemical compound ClCCl YMWUJEATGCHHMB-UHFFFAOYSA-N 0.000 description 33
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- ZMXDDKWLCZADIW-UHFFFAOYSA-N N,N-Dimethylformamide Chemical compound CN(C)C=O ZMXDDKWLCZADIW-UHFFFAOYSA-N 0.000 description 23
- 238000002360 preparation method Methods 0.000 description 23
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- 239000000047 product Substances 0.000 description 19
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- HEDRZPFGACZZDS-UHFFFAOYSA-N Chloroform Chemical compound ClC(Cl)Cl HEDRZPFGACZZDS-UHFFFAOYSA-N 0.000 description 16
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- CSCPPACGZOOCGX-UHFFFAOYSA-N Acetone Chemical compound CC(C)=O CSCPPACGZOOCGX-UHFFFAOYSA-N 0.000 description 6
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- 125000003349 3-pyridyl group Chemical group N1=C([H])C([*])=C([H])C([H])=C1[H] 0.000 description 5
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- 150000003217 pyrazoles Chemical class 0.000 description 5
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- MXERTNXQEMIYGL-UHFFFAOYSA-N 3-chloro-1-pyridin-3-ylpyrazol-4-amine Chemical compound N1=C(Cl)C(N)=CN1C1=CC=CN=C1 MXERTNXQEMIYGL-UHFFFAOYSA-N 0.000 description 4
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Abstract
Description
本発明は、新規なピラゾールアミド誘導体及びそれらの塩、並びに該化合物を有効成分として含有することを特徴とする有害生物防除剤に関するものである。本発明における有害生物防除剤とは、農園芸分野又は畜産・衛生分野(家畜や愛玩動物としての哺乳動物又は鳥類に対する内部寄生虫・外部寄生虫や家庭用及び業務用の衛生害虫・不快害虫)等における有害な節足動物を対象とした害虫防除剤を意味する。また、本発明における農薬とは、農園芸分野における殺虫・殺ダニ剤、殺線虫剤、除草剤及び殺菌剤等を意味する。 The present invention relates to a novel pyrazole amide derivative and a salt thereof, and a pest control agent comprising the compound as an active ingredient. The pest control agent in the present invention is the field of agriculture and horticulture or the field of livestock and hygiene (internal parasites / external parasites for domestic animals and pets, hygiene pests and unpleasant pests for domestic and commercial use) It means a pest control agent for harmful arthropods such as The agrochemical in the present invention means an insecticide / acaricide, nematicide, herbicide, fungicide, etc. in the field of agriculture and horticulture.
例えば特許文献1〜9にピラゾール誘導体が開示されているが、本発明に係るピラゾール誘導体に関しては何ら開示されていない。さらに、その有害生物防除剤、特に殺虫・殺ダニ剤及び哺乳動物又は鳥類の内部もしくは外部寄生虫防除剤としての有用性も全く知られていない。 For example, although pyrazole derivatives are disclosed in Patent Documents 1 to 9, nothing is disclosed about the pyrazole derivative according to the present invention. Furthermore, its usefulness as a pest control agent, particularly an insecticide / acaricide, and an internal or ectoparasite control agent for mammals or birds is not known at all.
また特許文献10には、ピラゾール誘導体が殺虫剤として有用であることが開示されているが、本発明に係るピラゾール化合物については何ら開示されていない。 Patent Document 10 discloses that pyrazole derivatives are useful as insecticides, but does not disclose any pyrazole compounds according to the present invention.
農園芸病害虫、森林病害虫、或いは衛生病害虫等、各種病害虫の防除を目的とする有害生物防除剤の開発が進み、多種多様な薬剤が今日まで実用に供されてきた。 The development of pest control agents for the purpose of controlling various pests such as agricultural and horticultural pests, forest pests, and hygiene pests has progressed, and a wide variety of drugs have been put to practical use to date.
しかしながら、こうした薬剤の長年にわたる使用により、近年、病害虫が薬剤抵抗性を獲得し、従来用いられてきた既存の殺虫剤や殺菌剤による防除が困難となる場面が増えてきている。また、既存の有害生物防除剤の一部のものは毒性が高く、或いはあるものは環境中に長期間残留することにより、生態系を攪乱するという問題も顕在化しつつある。このような状況下、高度な有害生物防除活性を有するのみならず、低毒性且つ低残留性の新規な有害生物防除剤の開発が常に期待されている。 However, due to the long-term use of such drugs, in recent years, pests have acquired drug resistance, making it difficult to control with existing insecticides and fungicides that have been used. In addition, some existing pest control agents are highly toxic, or some of them remain in the environment for a long time, and the problem of disturbing the ecosystem is becoming apparent. Under such circumstances, development of a novel pest control agent having not only high pest control activity but also low toxicity and low persistence is always expected.
本発明者らは、上記の課題解決を目標に鋭意研究を重ねた結果、本発明に係る下記一般式(1)で表される新規なピラゾール誘導体が優れた有害生物防除活性、特に殺虫・殺ダニ活性を示し、且つ、哺乳動物、魚類及び益虫等の非標的生物に対してほとんど悪影響の無い、極めて有用な化合物であることを見い出し、本発明を完成した。 As a result of intensive research aimed at solving the above problems, the present inventors have found that the novel pyrazole derivative represented by the following general formula (1) according to the present invention has excellent pest control activity, particularly insecticide / killing. The present invention was completed by discovering that it is a very useful compound that exhibits mite activity and has almost no adverse effect on non-target organisms such as mammals, fish and beneficial insects.
すなわち、本発明は下記〔1〕〜〔8〕に関するものである。 That is, the present invention relates to the following [1] to [8].
〔1〕
一般式(1):
[1]
General formula (1):
〔式中、Aは、酸素原子又は硫黄原子を表し、
R1は、C1〜C6アルキルを表し、
R2は、水素原子又はC1〜C6アルキルを表し、
R3は、ハロゲン原子又はC1〜C6アルキルを表し、
rは、0乃至2の整数を表す。〕で表されるピラゾールアミド誘導体又はその塩。
[In the formula, A represents an oxygen atom or a sulfur atom,
R 1 represents C 1 -C 6 alkyl;
R 2 represents a hydrogen atom or C 1 -C 6 alkyl,
R 3 represents a halogen atom or C 1 -C 6 alkyl,
r represents an integer of 0 to 2. ] The pyrazole amide derivative represented by these, or its salt.
〔2〕
Aは、酸素原子を表し、
R1は、メチル基又はエチル基を表し、
R2は、水素原子又はメチル基を表し、
R3は、塩素原子を表し、
rは、0を表す上記〔1〕記載のピラゾールアミド誘導体又はその塩。
[2]
A represents an oxygen atom,
R 1 represents a methyl group or an ethyl group,
R 2 represents a hydrogen atom or a methyl group,
R 3 represents a chlorine atom,
The pyrazole amide derivative or the salt thereof according to [1], wherein r represents 0.
〔3〕
上記〔1〕〜〔2〕記載のピラゾールアミド誘導体及びその塩から選ばれる1種又は2種以上を有効成分として含有する有害生物防除剤。
[3]
A pest control agent containing one or more selected from the pyrazole amide derivatives and salts thereof described in [1] to [2] as active ingredients.
〔4〕
上記〔1〕〜〔2〕記載のピラゾールアミド誘導体及びその塩から選ばれる1種又は2種以上を有効成分として含有する農薬。
[4]
An agrochemical containing one or more selected from the pyrazole amide derivatives and salts thereof described in [1] to [2] as active ingredients.
〔5〕
上記〔1〕〜〔2〕記載のピラゾールアミド誘導体及びその塩から選ばれる1種又は2種以上を有効成分として含有する哺乳動物又は鳥類の内部もしくは外部寄生虫防除剤。
[5]
A mammal or bird internal or ectoparasite control agent comprising one or more selected from the pyrazole amide derivatives and salts thereof described in [1] to [2] as active ingredients.
〔6〕
上記〔1〕〜〔2〕記載のピラゾールアミド誘導体及びその塩から選ばれる1種又は2種以上を有効成分として含有する殺虫剤又は殺ダニ剤。
[6]
An insecticide or acaricide containing as an active ingredient one or more selected from the pyrazole amide derivatives and salts thereof described in [1] to [2] above.
〔7〕
上記〔1〕〜〔2〕記載のピラゾールアミド誘導体及びその塩から選ばれる1種又は2種以上を有効成分として含有する土壌処理剤。
[7]
The soil treatment agent which contains the 1 type (s) or 2 or more types chosen from the pyrazole amide derivative and its salt of said [1]-[2] as an active ingredient.
〔8〕
土壌処理方法が土壌潅注処理である上記〔7〕記載の土壌処理剤。
[8]
The soil treatment agent according to the above [7], wherein the soil treatment method is soil irrigation treatment.
本発明化合物は多くの農業害虫、ハダニ類、哺乳動物又は鳥類の内部もしくは外部寄生虫に対して優れた殺虫・殺ダニ活性を有し、既存の殺虫剤に対して抵抗性を獲得した害虫に対しても十分な防除効果を発揮する。さらに、ホ乳類、魚類及び益虫に対してほとんど悪影響を及ぼさず、低残留性で環境に対する負荷も軽い。 The compound of the present invention has excellent insecticidal / miticidal activity against many agricultural pests, spider mites, mammals or birds, or against insects that have acquired resistance to existing insecticides. Even against this, it exhibits a sufficient control effect. Furthermore, it has little adverse effect on mammals, fish and beneficial insects, has low persistence, and has a light environmental impact.
従って、本発明は有用な新規有害生物防除剤を提供することができる。 Therefore, the present invention can provide a useful novel pest control agent.
本発明に包含される化合物のうちで、常法に従って酸付加塩にすることができるものは、例えば、フッ化水素酸、塩酸、臭化水素酸、ヨウ化水素酸等のハロゲン化水素酸の塩、硝酸、硫酸、燐酸、塩素酸、過塩素酸等の無機酸の塩、メタンスルホン酸、エタンスルホン酸、トリフルオロメタンスルホン酸、ベンゼンスルホン酸、p−トルエンスルホン酸等のスルホン酸の塩、ギ酸、酢酸、プロピオン酸、トリフルオロ酢酸、フマール酸、酒石酸、蓚酸、マレイン酸、リンゴ酸、コハク酸、安息香酸、マンデル酸、アスコルビン酸、乳酸、グルコン酸、クエン酸等のカルボン酸の塩又はグルタミン酸、アスパラギン酸等のアミノ酸の塩とすることができる。 Among the compounds included in the present invention, those that can be converted into acid addition salts according to a conventional method include, for example, hydrohalic acids such as hydrofluoric acid, hydrochloric acid, hydrobromic acid, hydroiodic acid, and the like. Salts of inorganic acids such as salts, nitric acid, sulfuric acid, phosphoric acid, chloric acid, perchloric acid, salts of sulfonic acids such as methanesulfonic acid, ethanesulfonic acid, trifluoromethanesulfonic acid, benzenesulfonic acid, p-toluenesulfonic acid, Salts of carboxylic acids such as formic acid, acetic acid, propionic acid, trifluoroacetic acid, fumaric acid, tartaric acid, succinic acid, maleic acid, malic acid, succinic acid, benzoic acid, mandelic acid, ascorbic acid, lactic acid, gluconic acid, citric acid, etc. A salt of an amino acid such as glutamic acid or aspartic acid can be used.
或いは、本発明に包含される化合物のうちで、常法に従って金属塩にすることができるものは、例えば、リチウム、ナトリウム、カリウムといったアルカリ金属の塩、カルシウム、バリウム、マグネシウムといったアルカリ土類金属の塩又はアルミニウムの塩とすることができる。 Alternatively, among the compounds included in the present invention, those that can be converted into a metal salt according to a conventional method include, for example, alkali metal salts such as lithium, sodium, and potassium, and alkaline earth metals such as calcium, barium, and magnesium. It can be a salt or a salt of aluminum.
次に、本明細書において示した各置換基の具体例を以下に示す。ここで、n−はノルマル、i−はイソ、s−はセカンダリー及びtert−はターシャリーを各々意味し、Phはフェニルを意味する。 Next, specific examples of each substituent shown in the present specification are shown below. Here, n- represents normal, i- represents iso, s- represents secondary, and tert- represents tertiary, and Ph represents phenyl.
また本発明のピラゾールアミド誘導体は、以下の製造法に記載の方法に準じて合成することができる。 Moreover, the pyrazole amide derivative of this invention is compoundable according to the method as described in the following manufacturing methods.
製造法A Manufacturing method A
一般式(41)[式中R3及びrは前記と同じ意味を表す。]で表される化合物を、一般式(5)[式中A、R1及びR2は前記と同じ意味を表し、Jbはハロゲン原子、−OH、−OSO2CH3、−OSO2CF3等の脱離基を表す。]で表される化合物と反応させることにより、一般式(1)[式中A、R1、R2、R3及びrは前記と同じ意味を表す。]で表される本発明化合物を得ることができる。 General formula (41) [wherein R 3 and r represent the same meaning as described above. The compound represented by the general formula (5) [wherein A, R 1 and R 2 represent the same meaning as described above, J b represents a halogen atom, —OH, —OSO 2 CH 3 , —OSO 2 CF Represents a leaving group such as 3 ; ] Is reacted with the compound represented by the general formula (1) [wherein A, R 1 , R 2 , R 3 and r represent the same meaning as described above. This invention compound represented by this can be obtained.
本反応は、一般式(41)で表される化合物1当量に対して、一般式(5)で表される化合物を、0.5〜50当量の範囲で用いることができる。必要ならば塩酸、硫酸、p−トルエンスルホン酸等の酸、炭酸カリウム、トリエチルアミン、ピリジン、4−(ジメチルアミノ)ピリジン、水素化ナトリウム、水酸化ナトリウム、水酸化カリウム等の塩基又は、ジエチルアゾジカルボキシレート等とトリフェニルホスフィン等を使用する光延反応を使用することができる。 In this reaction, the compound represented by the general formula (5) can be used in the range of 0.5 to 50 equivalents with respect to 1 equivalent of the compound represented by the general formula (41). If necessary, acid such as hydrochloric acid, sulfuric acid, p-toluenesulfonic acid, base such as potassium carbonate, triethylamine, pyridine, 4- (dimethylamino) pyridine, sodium hydride, sodium hydroxide, potassium hydroxide, or diethylazodi Mitsunobu reaction using carboxylate or the like and triphenylphosphine or the like can be used.
本反応は、無溶媒でも実施することができるが、溶媒を用いてもよい。例えば、N,N−ジメチルホルムアミド、N,N−ジメチルアセトアミド、アセトニトリル、ジメチルスルホキシド、1,3−ジメチル−2−イミダゾリノン、水等の極性溶媒、メタノール、エタノール、プロパノール、2−プロパノール、エチレングリコール等のアルコール類、ジエチルエーテル、テトラヒドロフラン、ジフェニルエーテル等のエーテル類、ベンゼン、トルエン、キシレン等の芳香族炭化水素類、塩化メチレン、クロロホルム、四塩化炭素等のハロゲン化炭化水素類、ペンタン、n−ヘキサン等の脂肪族炭化水素類が挙げられる。これらの溶媒は単独で用いても、これらの内の2種類以上を混合して用いてもよい。 This reaction can be carried out without solvent, but a solvent may be used. For example, polar solvent such as N, N-dimethylformamide, N, N-dimethylacetamide, acetonitrile, dimethyl sulfoxide, 1,3-dimethyl-2-imidazolinone, water, methanol, ethanol, propanol, 2-propanol, ethylene glycol Alcohols such as diethyl ether, tetrahydrofuran and diphenyl ether, aromatic hydrocarbons such as benzene, toluene and xylene, halogenated hydrocarbons such as methylene chloride, chloroform and carbon tetrachloride, pentane and n-hexane And aliphatic hydrocarbons. These solvents may be used alone or as a mixture of two or more thereof.
反応温度は、−60℃から反応混合物の還流温度までの任意の温度を設定することができ、反応時間は、反応基質の濃度、反応温度によって変化するが、通常5分から100時間の範囲で任意に設定できる。 The reaction temperature can be set to any temperature from −60 ° C. to the reflux temperature of the reaction mixture, and the reaction time varies depending on the concentration of the reaction substrate and the reaction temperature, but is usually arbitrary in the range of 5 minutes to 100 hours. Can be set.
一般式(5)で表される化合物の或るものは公知化合物であり、一部は市販品として入手できる。また、それ以外のものも文献記載の公知の方法に準じて合成することができる。 Some of the compounds represented by the general formula (5) are known compounds, and some of them are commercially available. Others can be synthesized according to known methods described in the literature.
製造法Aの反応は、必要であれば窒素、アルゴン等の不活性ガス雰囲気下で実施しても良い。 The reaction of production method A may be carried out in an inert gas atmosphere such as nitrogen or argon if necessary.
製造法Aの反応において、反応終了後の反応混合物は、直接濃縮、又は有機溶媒に溶解し、水洗後濃縮、又は氷水に投入、有機溶媒抽出後濃縮といった通常の後処理を行ない、目的の本発明化合物を得ることができる。また、精製の必要が生じたときには、再結晶、カラムクロマトグラフ、薄層クロマトグラフ、液体クロマトグラフ分取等の任意の精製方法によって分離、精製することができる。 In the reaction of production method A, the reaction mixture after completion of the reaction is directly concentrated or dissolved in an organic solvent, concentrated after washing with water, or poured into ice water, concentrated after extraction with an organic solvent, and then subjected to normal post-treatment. Inventive compounds can be obtained. Moreover, when the necessity for purification arises, it can be separated and purified by any purification method such as recrystallization, column chromatograph, thin layer chromatograph, liquid chromatographic fractionation and the like.
製造法Aで用いられる一般式(41)で表される化合物は、例えば以下の反応式1によって合成することが出来る。 The compound represented by the general formula (41) used in the production method A can be synthesized, for example, according to the following reaction formula 1.
反応式1 Reaction formula 1
一般式(13)[式中R3は前記と同じ意味を表す。]で表される化合物を、一般式(8−1)[式中rは前記と同じ意味を表す。]で表される化合物又は一般式(8−2)[式中rは前記と同じ意味を表す。]で表される化合物と反応させることにより、一般式(41)で表される化合物を得ることができる。 General formula (13) [wherein R 3 represents the same meaning as described above. The compound represented by general formula (8-1) [wherein r represents the same meaning as described above]. Or a compound represented by the general formula (8-2): wherein r represents the same meaning as described above. The compound represented by general formula (41) can be obtained by reacting with the compound represented by formula (41).
本反応では一般式(13)で表される化合物1当量に対して、一般式(8−1)で表される化合物は、0.5〜50当量の範囲で用いることができる。必要ならば、炭酸カリウム、トリエチルアミン、ピリジン、4−(ジメチルアミノ)ピリジン等の塩基を使用することができる。本反応は、無溶媒で実施してもよいが、溶媒を用いてもよく、例えば、N,N−ジメチルホルムアミド、N,N−ジメチルアセトアミド、アセトニトリル、ジメチルスルホキシド、1,3−ジメチル−2−イミダゾリノン等の極性溶媒、メタノール、エタノール、プロパノール、2−プロパノール、エチレングリコール等のアルコール類、ジエチルエーテル、テトラヒドロフラン、ジフェニルエーテル等のエーテル類、ベンゼン、トルエン、キシレン等の芳香族炭化水素類、塩化メチレン、クロロホルム、四塩化炭素等のハロゲン化炭化水素類、ペンタン、n−ヘキサン等の脂肪族炭化水素類が挙げられる。これらの溶媒は単独で用いても、これらの内の2種類以上を混合して用いてもよい。 In this reaction, the compound represented by the general formula (8-1) can be used in the range of 0.5 to 50 equivalents with respect to 1 equivalent of the compound represented by the general formula (13). If necessary, a base such as potassium carbonate, triethylamine, pyridine, 4- (dimethylamino) pyridine can be used. This reaction may be carried out without solvent, but a solvent may be used, for example, N, N-dimethylformamide, N, N-dimethylacetamide, acetonitrile, dimethyl sulfoxide, 1,3-dimethyl-2- Polar solvents such as imidazolinone, alcohols such as methanol, ethanol, propanol, 2-propanol and ethylene glycol, ethers such as diethyl ether, tetrahydrofuran and diphenyl ether, aromatic hydrocarbons such as benzene, toluene and xylene, methylene chloride , Halogenated hydrocarbons such as chloroform and carbon tetrachloride, and aliphatic hydrocarbons such as pentane and n-hexane. These solvents may be used alone or as a mixture of two or more thereof.
反応温度は、−60℃から反応混合物の還流温度までの任意の温度を設定することができ、反応時間は、反応基質の濃度、反応温度によって変化するが、通常5分から100時間の範囲で任意に設定できる。 The reaction temperature can be set to any temperature from −60 ° C. to the reflux temperature of the reaction mixture, and the reaction time varies depending on the concentration of the reaction substrate and the reaction temperature, but is usually arbitrary in the range of 5 minutes to 100 hours. Can be set.
一般式(8−1)で表される化合物の或るものは公知化合物であり、一部は市販品として入手できる。また、それ以外のものも文献記載の公知の方法に準じて合成することができる。 Some of the compounds represented by formula (8-1) are known compounds, and some of them are available as commercial products. Others can be synthesized according to known methods described in the literature.
また、一般式(13)で表される化合物を、一般式(8−2)で表される化合物を縮合剤を用いて反応させて、一般式(41)で表される本発明化合物を合成することもできる。本反応では、一般式(8−2)で表される化合物1当量に対して1〜4当量のWSC{1−エチル−3−(3−ジメチルアミノプロピル)カルボジイミド塩酸塩}、CDI(カルボニルジイミダゾール)等の縮合剤を用いることができる。また、一般式(13)で表される化合物1当量に対して、一般式(8−2)で表される化合物を、0.5〜50当量の範囲で用いることができる。必要ならば、炭酸カリウム、トリエチルアミン、ピリジン、4−(ジメチルアミノ)ピリジン等の塩基を使用することができる。 Further, the compound represented by the general formula (13) is reacted with the compound represented by the general formula (8-2) using a condensing agent to synthesize the compound represented by the general formula (41). You can also In this reaction, 1 to 4 equivalents of WSC {1-ethyl-3- (3-dimethylaminopropyl) carbodiimide hydrochloride}, CDI (carbonyldioxychloride) per 1 equivalent of the compound represented by the general formula (8-2). A condensing agent such as imidazole can be used. Moreover, the compound represented by General formula (8-2) can be used in 0.5-50 equivalent with respect to 1 equivalent of compounds represented by General formula (13). If necessary, a base such as potassium carbonate, triethylamine, pyridine, 4- (dimethylamino) pyridine can be used.
本反応は、無溶媒で実施してもよいが、溶媒を用いてもよく、例えば、N,N−ジメチルホルムアミド、N,N−ジメチルアセトアミド、アセトニトリル、ジメチルスルホキシド、1,3−ジメチル−2−イミダゾリノン等の極性溶媒、メタノール、エタノール、プロパノール、2−プロパノール、エチレングリコール等のアルコール類、ジエチルエーテル、テトラヒドロフラン、ジフェニルエーテル等のエーテル類、ベンゼン、トルエン、キシレン等の芳香族炭化水素類、塩化メチレン、クロロホルム、四塩化炭素等のハロゲン化炭化水素類、ペンタン、n−ヘキサン等の脂肪族炭化水素類が挙げられる。これらの溶媒は単独で用いても、これらの内の2種類以上を混合して用いてもよい。 This reaction may be carried out without solvent, but a solvent may be used, for example, N, N-dimethylformamide, N, N-dimethylacetamide, acetonitrile, dimethyl sulfoxide, 1,3-dimethyl-2- Polar solvents such as imidazolinone, alcohols such as methanol, ethanol, propanol, 2-propanol and ethylene glycol, ethers such as diethyl ether, tetrahydrofuran and diphenyl ether, aromatic hydrocarbons such as benzene, toluene and xylene, methylene chloride , Halogenated hydrocarbons such as chloroform and carbon tetrachloride, and aliphatic hydrocarbons such as pentane and n-hexane. These solvents may be used alone or as a mixture of two or more thereof.
反応温度は、−60℃から反応混合物の還流温度までの任意の温度を設定することができ、反応時間は、反応基質の濃度、反応温度によって変化するが、通常5分から100時間の範囲で任意に設定できる。 The reaction temperature can be set to any temperature from −60 ° C. to the reflux temperature of the reaction mixture, and the reaction time varies depending on the concentration of the reaction substrate and the reaction temperature, but is usually arbitrary in the range of 5 minutes to 100 hours. Can be set.
一般式(8−2)で表される化合物の或るものは公知化合物であり、一部は市販品として入手できる。また、それ以外のものも文献記載の公知の方法に準じて合成することができる。 Some of the compounds represented by formula (8-2) are known compounds, and some of them are available as commercial products. Others can be synthesized according to known methods described in the literature.
反応例1で用いられる一般式(13)で表される化合物は、例えば以下の反応式2、反応式3又は反応式4によって合成することが出来る。 The compound represented by the general formula (13) used in Reaction Example 1 can be synthesized by, for example, the following Reaction Formula 2, Reaction Formula 3, or Reaction Formula 4.
反応式2 Reaction formula 2
一般式(2−1)[式中R3は前記と同じ意味を表し、R50はC1〜C6のアルキル基を表す。]で表される化合物は、シンレット 2004年,4巻,703頁等の公知の方法により合成することができる。 General formula (2-1) [wherein R 3 represents the same meaning as described above, and R 50 represents a C 1 to C 6 alkyl group. ] Can be synthesized by a known method such as Sinlet 2004, Vol. 4, 703.
すなわち、一般式(2−1)で表される化合物を、文献既知の公知の方法、例えばジャーナル オブ オーガニック ケミストリー 2004年,69巻,5578頁等に記載の方法に準じて、公知の一般式(2−2)[L1はフッ素原子、塩素原子、臭素原子、ヨウ素原子、−B(OH)2基又は−B(OR51)2基(式中R51は、水素原子又は、同一又は異なってもよいC1〜C6アルキルを表し、或いは、2つのR51が一緒になって−CH2CH2−又は−C(CH3)2C(CH3)2−を形成してもよい)を表す。]で表される化合物と、銅などの金属触媒及び塩基の存在下又はパラジウムなどの遷移金属触媒及び塩基の存在下で反応させることにより、一般式(2−3)[式中R3及びR50は前記と同じ意味を表す。]の化合物を得ることができる。 That is, the compound represented by the general formula (2-1) is converted into a known general formula (2) according to a known method known in the literature, for example, the method described in Journal of Organic Chemistry 2004, 69, 5578. 2-2) [L 1 is a fluorine atom, a chlorine atom, a bromine atom, an iodine atom, -B (OH) 2 group or -B (OR 51 ) 2 group (wherein R 51 is a hydrogen atom or the same or different May represent C 1 -C 6 alkyl, or two R 51 together may form —CH 2 CH 2 — or —C (CH 3 ) 2 C (CH 3 ) 2 —. ). And a compound represented by general formula (2-3) [wherein R 3 and R] are reacted with each other in the presence of a metal catalyst such as copper and a base or in the presence of a transition metal catalyst such as palladium and a base. 50 represents the same meaning as described above. Can be obtained.
さらに一般式(2−3)で表される化合物を、文献既知の公知の方法に準じて加水分解反応させることにより、一般式(2)[式中R3は前記と同じ意味を表す。]で表される化合物を製造することができる。 Furthermore, by hydrolyzing the compound represented by the general formula (2-3) according to a known method known in the literature, the general formula (2) [wherein R 3 represents the same meaning as described above. The compound represented by this can be manufactured.
続いて、一般式(2)で表される化合物を、ジフェニルホスホリルアジド(DPPA)及び一般式(3)[式中R6aはC1〜C6アルキル基を表す。]で表される化合物と反応させることにより、一般式(4)[式中R3及びR6aは前記と同じ意味を表す。]で表される化合物を得ることができる。 Subsequently, the compound represented by the general formula (2) is diphenylphosphoryl azide (DPPA) and the general formula (3) [wherein R 6a represents a C 1 to C 6 alkyl group. ] Is reacted with a compound represented by the general formula (4) [wherein R 3 and R 6a represent the same meaning as described above. The compound represented by this can be obtained.
本反応では、一般式(2)で表される化合物1当量に対して、DPPAは0.5〜50当量の範囲で用いることができ、一般式(3)で表される化合物は、一般式(2)で表される化合物1当量に対して、1当量から溶媒量の範囲で用いることができる。必要ならば炭酸カリウム、トリエチルアミン、ピリジン、4−(ジメチルアミノ)ピリジン等の塩基を使用することができる。 In this reaction, DPPA can be used in the range of 0.5 to 50 equivalents relative to 1 equivalent of the compound represented by the general formula (2), and the compound represented by the general formula (3) It can be used in the range of 1 equivalent to the amount of solvent with respect to 1 equivalent of the compound represented by (2). If necessary, a base such as potassium carbonate, triethylamine, pyridine, 4- (dimethylamino) pyridine can be used.
本反応は、無溶媒でも実施することができるが、溶媒を用いてもよい。例えば、N,N−ジメチルホルムアミド、N,N−ジメチルアセトアミド、アセトニトリル、ジメチルスルホキシド、1,3−ジメチル−2−イミダゾリノン、水等の極性溶媒、メタノール、エタノール、プロパノール、2−プロパノール、エチレングリコール等のアルコール類、ジエチルエーテル、テトラヒドロフラン、ジフェニルエーテル等のエーテル類、ベンゼン、トルエン、キシレン等の芳香族炭化水素類、塩化メチレン、クロロホルム、四塩化炭素等のハロゲン化炭化水素類、ペンタン、n−ヘキサン等の脂肪族炭化水素類が挙げられる。これらの溶媒は単独で用いても、これらの内の2種類以上を混合して用いてもよい。 This reaction can be carried out without solvent, but a solvent may be used. For example, polar solvent such as N, N-dimethylformamide, N, N-dimethylacetamide, acetonitrile, dimethyl sulfoxide, 1,3-dimethyl-2-imidazolinone, water, methanol, ethanol, propanol, 2-propanol, ethylene glycol Alcohols such as diethyl ether, tetrahydrofuran and diphenyl ether, aromatic hydrocarbons such as benzene, toluene and xylene, halogenated hydrocarbons such as methylene chloride, chloroform and carbon tetrachloride, pentane and n-hexane And aliphatic hydrocarbons. These solvents may be used alone or as a mixture of two or more thereof.
反応温度は、−60℃から反応混合物の還流温度までの任意の温度を設定することができ、反応時間は、反応基質の濃度、反応温度によって変化するが、通常5分から100時間の範囲で任意に設定できる。 The reaction temperature can be set to any temperature from −60 ° C. to the reflux temperature of the reaction mixture, and the reaction time varies depending on the concentration of the reaction substrate and the reaction temperature, but is usually arbitrary in the range of 5 minutes to 100 hours. Can be set.
一般式(3)で表される化合物の或るものは公知化合物であり、一部は市販品として入手できる。また、それ以外のものも文献記載の公知の方法に準じて容易に合成することができる。 Some of the compounds represented by the general formula (3) are known compounds, and some of them are commercially available. Others can be easily synthesized according to known methods described in the literature.
このようにして合成した一般式(4)で表される化合物を酸又は塩基で、脱保護することにより、一般式(13)で表される化合物を合成することができる。 The compound represented by the general formula (13) can be synthesized by deprotecting the compound represented by the general formula (4) thus synthesized with an acid or a base.
反応式3 Reaction formula 3
一般式(2−13)[式中R3は前記と同じ意味を表す。]で表される化合物は、国際公開第2011/048082号明細書等の公知の方法により合成することができる。 General formula (2-13) [wherein R 3 represents the same meaning as described above. ] Can be synthesized by a known method such as International Publication No. 2011/048082.
一般式(2−13)で表される化合物と一般式(2−2)で表される化合物を、反応式2と同様の方法で反応させることにより、一般式(13)で表される化合物を合成することができる。 A compound represented by the general formula (13) by reacting the compound represented by the general formula (2-13) and the compound represented by the general formula (2-2) in the same manner as in Reaction Formula 2. Can be synthesized.
反応式4 Reaction formula 4
一般式(2)で表される化合物を、酸無水物存在下、ニトロ化剤(例えば、硝酸、発煙硝酸、混酸(硝酸−硫酸)、硝酸ナトリウム等の金属硝酸塩、硝酸アセチル、五酸化二窒素、ニトロニウムトリフルオロメタンスルホナート等のニトロニウム塩など)と反応させることにより一般式(2−14)[式中R3は前記と同じ意味を表す。]を合成することが出来る。 In the presence of an acid anhydride, the compound represented by the general formula (2) is converted to a nitrating agent (for example, nitric acid, fuming nitric acid, mixed acid (nitric acid-sulfuric acid), metal nitrate such as sodium nitrate, acetyl nitrate, dinitrogen pentoxide. And a nitronium salt such as nitronium trifluoromethanesulfonate) to give a general formula (2-14) [wherein R 3 represents the same meaning as described above. ] Can be synthesized.
また、一般式(2−14)で表される化合物は、一般式(2−16)[式中R3は前記と同じ意味を表す。]で表される化合物と一般式(2−2)で表される化合物とを、反応式2と同様の方法で反応させることにより合成することが出来る。 In addition, the compound represented by the general formula (2-14) is represented by the general formula (2-16) [wherein R 3 represents the same meaning as described above. Can be synthesized by reacting the compound represented by the general formula (2-2) with the compound represented by the general formula (2-2) in the same manner as in Reaction Scheme 2.
一般式(2−16)で表される化合物は、テトラへドロン 2008年,64巻,11249頁等の公知の方法により合成することができる。 The compound represented by the general formula (2-16) can be synthesized by a known method such as tetrahedron 2008, 64, 11249.
続いて、一般式(2−14)で表される化合物を、公知のニトロ基の還元法により一般式(13)で表される化合物を合成することが出来る。 Subsequently, the compound represented by the general formula (2-14) can be synthesized from the compound represented by the general formula (13) by a known nitro group reduction method.
本発明化合物は、農園芸作物及び樹木などを加害する所謂農業害虫、家畜・家禽類に寄生する所謂家畜害虫、家屋等の人間の生活環境で様々な悪影響を与える所謂衛生害虫、倉庫に貯蔵された穀物等を加害する所謂貯穀害虫等としての昆虫類、及び同様の場面で発生、加害するダニ類、甲殻類、軟体動物、線虫類の何れの有害生物も低濃度で有効に防除できる。 The compounds of the present invention are stored in warehouses, so-called agricultural pests that harm agricultural and horticultural crops and trees, so-called livestock pests that parasitize livestock and poultry, so-called sanitary pests that cause various adverse effects in the human living environment such as houses. It is possible to effectively control insects such as so-called stored grain pests that harm cereals and the like, and pests such as mites, crustaceans, molluscs, and nematodes that occur and harm in similar situations at low concentrations.
本発明化合物を用いて防除しうる昆虫類、ダニ類、甲殻類、軟体動物及び線虫類には具体的に、例えば、下記の生物が挙げられるが、本発明はこれらのみに限定されるものではない。 Specific examples of insects, mites, crustaceans, molluscs and nematodes that can be controlled using the compounds of the present invention include the following organisms, but the present invention is not limited to these. is not.
チャノコカクモンハマキ(Adoxophyes honmai)、リンゴコカクモンハマキ(Adoxophyes orana faciata)、リンゴモンハマキ(Archips breviplicanus)、ミダレカクモンハマキ(Archips fuscocupreanus)、ナシヒメシンクイ(Grapholita molesta)、チャハマキ(Homona magnanima)、マメシンクイガ(Leguminivora glycinivorella)、マメヒメサヤムシガ(Matsumuraeses phaseoli)、トビハマキ(Pandemis heparana)、ナシチビガ(Bucculatrix pyrivorella)、モモハモグリガ(Lyonetia clerkella)、ギンモンハモグリガ(Lyonetia prunifoliella malinella)、チャノホソガ(Caloptilia theivora)、キンモンホソガ(Phyllonorycter ringoniella)、ミカンハモグリガ(Phyllocnistis citrella)、ネギコガ(Acrolepiopsis sapporensis)、ヤマノイモコガ(Acrolepiopsis suzukiella)、コナガ(Plutella xylostella)、カキノヘタムシガ(Stathmopoda masinissa)、イモキバガ(Helcystogramma triannulella)、ワタアカミムシ(Pectinophora gossypiella)、モモシンクイガ(Carposina sasakii)、コドリンガ(Cydla pomonella)、ニカメイガ(Chilo suppressalis)、コブノメイガ(Cnaphalocrocis medinalis)、モモノゴマダラノメイガ(Conogethes punctiferalis)、ワタヘリクロノメイガ(Diaphania indica)、シロイチモジマダラメイガ(Etiella zinckenella)、クワノメイガ(Glyphodes pyloalis)、ハイマダラノメイガ(Hellula undalis)、アワノメイガ(Ostrinia furnacalis)、アズキノメイガ(Ostrinia scapulalis)、ヨーロピアンコーンボーラー(Ostrinia nubilalis)、シバツトガ(Parapediasia teterrella)、イチモンジセセリ(Parnara guttata)、オオモンシロチョウ(Pieris brassicae)、モンシロチョウ(Pieris rapae crucivora)、ヨモギエダシャク(Ascotis selenaria)、ソイビーンルーパー(Pseudoplusia includens)、チャドクガ(Euproctis pseudoconspersa)、マイマイガ(Lymantria dispar)、ヒメシロモンドクガ(Orgyia thyellina)、アメリカシロヒトリ(Hyphantria cunea)、クワゴマダラヒトリ(Lemyra imparilis)、アケビコノハ(Adris tyrannus)、ナカジロシタバ(Aedia leucomelas)、タマナヤガ(Agrotis ipsilon)、カブラヤガ(Agrotis segetum)、タマナギンウワバ(Autographa nigrisigna)、ミツモンキンウワバ(Ctenoplusia agnata)、オオタバコガ(Helicoverpa armigera)、タバコガ(Helicoverpa assulta)、コットンボールワーム(Helicoverpa zea)、タバコバッドワーム(Heliothis virescens)、ヨトウガ(Mamestra brassicae)、アワヨトウ(Mythimna separata)、フタオビコヤガ(Naranga aenescens)、サザンアーミーワーム(Spodoptera eridania)、シロイチモジヨトウ(Spodoptera exigua)、フォールアーミーワーム(Spodoptera frugiperda)、コットンリーフワーム(Spodoptera littoralis)、ハスモンヨトウ(Spodoptera litura)、スジキリヨトウ(Spodoptera depravata)、イラクサギンウワバ(Trichoplusia ni)、グレープベリーモス(Endopiza viteana)、トマトホーンワーム(Manduca quinquemaculata)、タバコホーンワーム(Manduca sexta)等の鱗翅目昆虫。 Adoxophyes honmai, Adoxophyes orana faciata, Archips breviplicanus, Archips fuscocupreanus, Grapholita molesta, Chama magnan Leguminivora glycinivorella), Matsumuraeses phaseoli, Pandemis heparana, Bucculatrix pyrivorella, Lyonetia clerkella, Lyonetia prunifal ringoniella), mandarin leaf moth (Phyllocnistis citrella), green moth (Acrolepiopsis sapporensis), wild moth (Acrolepiopsis suzukiella), black moth (Plutella xylostella), oyster leaf moth (Stathmopoda masinissa), cystogram tria ora gossypiella), peach sinker moth (Carposina sasakii), codling moth (Cydla pomonella), green moth (Chilo suppressalis), corn borer (Cnaphalocrocis medinalis), peach moth (Conogethes punctiferalis), cotton moth (Dia) (Etiella zinckenella), Glyphodes pyloalis, Hellula undalis, Ostrinia furnacalis, Ostrinia scapulalis, European corn borer (Ostrinia nubilaliseter, Pesta pal) ), White-tailed butterfly (Pieris brassicae), white-tailed butterfly (Pieris rapae crucivora), mugwort (Ascotis selenaria), soy bean looper (Pseudoplusia includens), chadokuga (Euproctis pseudoconspersa), maimaiga (Lymantria disparia), thymeina ), White-spotted starfish (Hyphantria cunea), white-spotted starfish (Lemyra imparilis), Akebiko-no-ha (Adris tyrannus), red-footed butterfly (Aedia leucomelas), red-footed squirrel (Agrotis ipsilon), red-tailed squirrel (Agrotis segetum) Uwaba (Ctenoplusia agnata), Helicoverpa armigera, Tobacco moth (Helicoverpa assulta), Cotton ball worm (Helicoverpa zea), Tobacco bad worm (Heliothis virescens), Mamestra brassicae, Mythimna naa ), Southern army worm (Spodoptera eridania), Spodoptera exigua, Fall army worm (Spodoptera frugiperda), Cotton leaf worm (Spodoptera littoralis), Spodoptera litura, Spodoptera litura, Spodoptera era ), Leeb Berry Moss (Endopiza viteana), tomato horn worm (Manduca quinquemaculata), tobacco horn worm (Manduca sexta) lepidopteran insects such as.
ヒラズハナアザミウマ(Frankliniella intonsa)、ミカンキイロアザミウマ(Frankliniella occidentalis)、クロトンアザミウマ(Heliothrips haemorrhoidalis)、チャノキイロアザミウマ(Scirtothrips dorsalis)、ミナミキイロアザミウマ(Thrips palmi)、ネギアザミウマ(Thrips tabaci)、カキクダアザミウマ(Ponticulothrips diospyrosi)等の総翅目昆虫。 Thrips thrips (Frankliniella intonsa), Citrus thrips (Frankliniella occidentalis), Croton thrips (Prithia thrips) Moths in total.
ブチヒゲカメムシ(Dolycoris baccarum)、ナガメ(Eurydema rugosum)、トゲシラホシカメムシ(Eysarcoris aeneus)、オオトゲシラホシカメムシ(Eysarcoris lewisi)、シラホシカメムシ(Eysarcoris ventralis)、ツヤアオカメムシ(Glaucias subpunctatus)、クサギカメムシ(Halyomorpha halys)、アオクサカメムシ(Nezara antennata)、ミナミアオカメムシ(Nezara viridula)、イチモンジカメムシ(Piezodorus hybneri)、チャバネアオカメムシ(Plautia crossota)、イネクロカメムシ(Scotinophora lurida)、ホソハリカメムシ(Cletus punctiger)、クモヘリカメムシ(Leptocorisa chinensis)、ホソヘリカメムシ(Riptortus clavatus)、アカヒメヘリカメムシ(Rhopalus msculatus)、カンシャコバネナガカメムシ(Cavelerius saccharivorus)、コバネヒョウタンナガカメムシ(Togo hemipterus)、アカホシカメムシ(Dysdercus cingulatus)、ツツジグンバイ(Stephanitis pyrioides)、クロトビカスミカメ(Halticus insularis)、ターニッシュドプラントバグ(Lygus lineolaris)、ナガムギカスミカメ(Stenodema sibiricum)、アカスジカスミカメ(Stenotus rubrovittatus)、イネホソミドリカスミカメ(Trigonotylus caelestialium)、フタテンヒメヨコバイ(Arboridia apicalis)、ミドリナガヨコバイ(Balclutha saltuella)、フタテンオオヨコバイ(Epiacanthus stramineus)、ポテトリーフホッパー(Empoasca fabae)、カキノヒメヨコバイ(Empoasca nipponica)、チャノミドリヒメヨコバイ(Empoasca onukii)、マメノミドリヒメヨコバイ(Empoasca sakaii)、ヒメフタテンヨコバイ(Macrosteles striifrons)、ツマグロヨコバイ(Nephotettix cinctinceps)、コットンフリーホッパー(Psuedatomoscelis seriatus)、ヒメトビウンカ(Laodelphax striatella)、トビイロウンカ(Nilaparvata lugens)、セジロウンカ(Sogatella furcifera)、ミカンキジラミ(Diaphorina citri)、ナシキジラミ(Psylla pyrisuga)、ミカントゲコナジラミ(Aleurocanthus spiniferus)、シルバーリーフコナジラミ(Bemisia argentifolii)、タバココナジラミ(Bemisia tabaci)、ミカンコナジラミ(Dialeurodes citri)、オンシツコナジラミ(Trialeurodes vaporariorum)、ブドウネアブラムシ(Viteus vitifolii)、ワタアブラムシ(Aphis gossypii)、ユキヤナギアブラムシ(Aphis spiraecola)、モモアカアブラムシ(Myzus persicae)、コミカンアブラムシ(Toxoptera aurantii)、オオワラジカイガラムシ(Drosicha corpulenta)、イセリアカイガラムシ(Icerya purchasi)、ナスコナカイガラムシ(Phenacoccus solani)、ミカンコナカイガラムシ(Planococcus citri)、フジコナカイガラムシ(Planococcus kuraunhiae)、クワコナカイガラムシ(Pseudococcus comstocki)、ツノロウムシ(Ceroplastes ceriferus)、ルビーロウムシ(Ceroplastes rubens)、アカマルカイガラムシ(Aonidiella aurantii)、ナシマルカイガラムシ(Comstockaspis perniciosa)、ティースケール(Fiorinia theae)、チャノマルカイガラムシ(Pseudaonidia paeoniae)、クワシロカイガラムシ(Pseudaulacaspis pentagona)、ウメシロカイガラムシ(Pseudaulacaspis prunicola)、マサキナガカイガラムシ(Unaspis euonymi)、ヤノネカイガラムシ(Unaspis yanonensis)、トコジラミ(Cimex lectularius)等の半翅目昆虫。 Spotted beetle (Dolycoris baccarum), sea turtle (Eurydema rugosum), bark beetle (Eysarcoris aeneus), horseshoe beetle (Eysarcoris lewisi), white-headed beetle (Eysarcoris ventralis), subtilus , Nezara antennata, Nezara viridula, Piezodorus hybneri, Plautia crossota, Scotinophora lurida, tiger C Stink bug (Leptocorisa chinensis), Hoso-heli beetle (Riptortus clavatus), Red-headed beetle (Rhopalus msculatus), Cavelerius saccharivorus, Toba hemipterus cus, Togo hemipterus (Stephanitis pyrioides), Kuroto Bikasumi turtle (Halticus insularis), Turned plant bug (Lygus lineolaris), Nagamu sika turtle (Stenodema sibiricum), Akasika sika turtle (Stenotus rubrovittatus), Rice moss turtle (Trigonotylus caelestialium), ical Arisbori dia Green leafhopper (Balclutha saltuella), butterfly leafhopper (Epiacanthus stramineus), potato leaf hopper (Empoasca fabae), oyster leafhopper (Empoasca nipponica), Chanomidorimempei (Empoasca onukii), omenosaka ), Leafhopper leafhopper (Macrosteles striifrons), leafhopper leafhopper (Nephotettix cinctinceps), cotton-free hopper (Psuedatomoscelis seriatus), leafhopper (Laodelphax striatella), leafhopper (Nilaparvata lugens) Psylla pyrisuga, Aleurocanthus spiniferus, Silver leaf whitefly (Bemisia argentifolii), Tobacco whitefly (Bemisia tabaci), Citrus whitefly (Dialeurodes citri), Onsitsuna whitefly (trialeurous grape rum, Trialeurodes vapor Cotton Aphid (Aphis gossypii), Snowy Aphid (Aphis spiraecola), Peach Aphid (Myzus persicae), Komikan Aphid (Toxoptera aurantii), Alaska Scale Aphid (Drosicha corpulenta), Iceria scale P solani), citrus scale insect (Planococcus citri), stag beetle scale (Planococcus kuraunhiae), stag beetle scale (Pseudococcus comstocki), horn beetle (Ceroplastes ceriferus), ruby rotum (Ceroplastes rubens), red scallop Nymphalidae (Comstockaspis perniciosa), tea scale (Fiorinia theae), chanomarine scale insect (Pseudaonidia paeoniae), stag beetle (Pseudaulacaspis pentagona), scallop scale (Pseudaulacaspis prunicola), euglena (Unaspis yanonensis), Hemiptera (Cimex lectularius) and other Hemiptera insects.
ドウガネブイブイ(Anomala cuprea)、ヒメコガネ(Anomala rufocuprea)、コアオハナムグリ(Gametis jucunda)、ナガチャコガネ(Heptophylla picea)、マメコガネ(Popillia japonica)、コロラドポテトビートル(Lepinotarsa decemlineata)、マルクビクシコメツキ(Melanotus fortnumi)、カンシャクシコメツキ(Melanotus tamsuyensis)、タバコシバンムシ(Lasioderma serricorne)、ヒメヒラタケシキスイ(Epuraea domina)、インゲンテントウ(Epilachna varivestis)、ニジュウヤホシテントウ(Epilachna vigintioctopunctata)、チャイロコメノゴミムシダマシ(Tenebrio molitor)、コクヌストモドキ(Tribolium castaneum)、ゴマダラカミキリ(Anoplophora malasiaca)、マツノマダラカミキリ(Monochamus alternatus)、キボシカミキリ(Psacothea hilaris)、ブドウトラカミキリ(Xylotrechus pyrrhoderus)、アズキゾウムシ(Callosobruchus chinensis)、ウリハムシ(Aulacophora femoralis)、テンサイトビハムシ(Chaetocnema concinna)、サザンコーンルートワーム(Diabrotica undecimpunctata)、ウエスタンコーンルートワーム(Diabrotica virgifera)、ノーザンコーンルートワーム(Diabrotica barberi)、イネドロオイムシ(Oulema oryzae)、キスジノミハムシ(Phyllotreta striolata)、ナスナガスネトビハムシ(Psylliodes angusticollis)、モモチョッキリゾウムシ(Rhynchites heros)、アリモドキゾウムシ(Cylas formicarius)、ワタミゾウムシ(Anthonomus grandis)、イネゾウムシ(Echinocnemus squameus)、イモゾウムシ(Euscepes postfasciatus)、アルファルファタコゾウムシ(Hypera postica)、イネミズゾウムシ(Lissohoptrus oryzophilus)、キンケクチブトゾウムシ(Otiorhynchus sulcatus)、グラナリーウィービル(Sitophilus granarius)、コクゾウムシ(Sitophilus zeamais)、シバオサゾウムシ(Sphenophorus venatus vestitus)、アオバアリガタハネカクシ(Paederus fuscipes)等の鞘翅目昆虫。 Douganebubui (Anomala cuprea), Japanese common squirrel (Anomala rufocuprea), Core ohanamuri (Gametis jucunda), Nagachakogane (Heptophylla picea), Japanese beetle (Popillia japonica), Colorado potato beetle (Lepinotarsa decemlineata) White-footed beetle (Melanotus tamsuyensis), Tobacco beetle (Lasioderma serricorne), Himetaketakekisui (Epuraea domina), Green beetle (Epilachna varivestis), Nijuya-hoshi-tento (Epilachna vigintioctopunctata), T. Tribolium castaneum, Anoplophora malasiaca, Monochamus alternatus, Psacothea hilaris, Xylotrechus pyrrhoderus, callosobruchus, Callosobruchus Western Root beetle (Chaetocnema concinna), Southern corn root worm (Diabrotica undecimpunctata), Western corn root worm (Diabrotica virgifera), Northern corn root worm (Diabrotica barberi), Inedro beetle (Oulema oryzae), Phyllotreta nastriatum, Phyllotreta striol Tobet beetle (Psylliodes angusticollis), peach weevil (Rhynchites heros), aphid weevil (Cylas formicarius), cotton weevil (Anthonomus grandis), weevil (Echinocnemus squameus), weevil (Euscepes postfasciatus) Rice weevil (Lissohoptrus oryzophilus), horned weevil (Otiorhynchus sulcatus), granary weevil (Sitophilus granarius), hornet weevil (Sitophilus zeamais), bark weevil (Sphenophorus venatus vestitus moth) erus fuscipes).
ダイズサヤタマバエ(Asphondylia yushimai)、ムギアカタマバエ(Sitodiplosis mosellana)、ウリミバエ(Bactrocera cucurbitae)、ミカンコミバエ(Bactrocera dorsalis)、チチュウカイミバエ(Ceratitis capitata)、イネヒメハモグリバエ(Hydrellia griseola)、オウトウショウジョウバエ(Drosophila suzukii)、イネハモグリバエ(Agromyza oryzae)、ナモグリバエ(Chromatomyia horticola)、ナスハモグリバエ(Liriomyza bryoniae)、ネギハモグリバエ(Liriomyza chinensis)、トマトハモグリバエ(Liriomyza sativae)、マメハモグリバエ(Liriomyza trifolii)、タネバエ(Delia platura)、テンサイモグリハナバエ(Pegomya cunicularia)、アップルマゴット(Rhagoletis pomonella)、ヘシアンフライ(Mayetiola destructor)、イエバエ(Musca domestica)、サシバエ(Stomoxys calcitrans)、ヒツジシラミバエ(Melophagus ovinus)、ウシバエ(Hypoderma bovis)、キスジウシバエ(Hypoderma lineatum)、ヒツジバエ(Oestrus ovis)、ツェツェバエ(Glossina palpalis, Glossina morsitans)、キアシオオブユ(Prosimulium yezoensis)、ウシアブ(Tabanus trigonus)、オオチョウバエ(Telmatoscopus albipunctatus)、トクナガヌカカ(Leptoconops nipponensis)、アカイエカ(Culex pipiens pallens)、ネッタイシマカ(Aedes aegypti)、ヒトスジシマカ(Aedes albopicutus)、シナハマダラカ(Anopheles hyracanus sinesis)等の双翅目昆虫。 Soybean flies (Asphondylia yushimai), mud wings (Sitodiplosis mosellana), fruit flies (Bactrocera cucurbitae), citrus fruit flies (Bactrocera dorsalis), citrus fruit flies (Ceratitis capitata), rice moth flies Leafhopper (Agromyza oryzae), Leafworm (Chromatomyia horticola), Eggplant leaffly (Liriomyza bryoniae), Leafhopper (Liriomyza chinensis), Tomato leaffly (Liriomyza sativae), Beanworm (Liriomyza trifoli), Liriomyza trifoli (Pegomya cunicularia), apple haggot (Rhagoletis pomonella), hessian fly (Mayetiola destructor), housefly (Musca domestica), barn fly (Stomoxys calcitrans), sheep flies (Melophagus ovinus), bullflies (Hypoderma bovisma), , Sheep flies (Oestrus ovis), tsetse flies (Glossina palpalis, Glossina morsitans), black-headed ayu (Prosimulium yezoensis), bullfly (Tabanus trigonus), giant fly (Telmatoscopus albipunctatus), nipponen sip (Leptocons) Diptera, such as Aedes aegypti, Aedes albopicutus, Anopheles hyracanus sinesis.
クリハバチ(Apethymus kuri)、カブラハバチ(Athalia rosae)、チュウレンジハバチ(Arge pagana)、マツノキハバチ(Neodiprion sertifer)、クリタマバチ(Dryocosmus kuriphilus)、グンタイアリ(Eciton burchelli, Eciton schmitti)、クロオオアリ(Camponotus japonicus)、オオスズメバチ(Vespa mandarina)、ブルドックアント(Myrmecia spp.)、ファイヤーアント類(Solenopsis spp.)、ファラオアント(Monomorium pharaonis)等の膜翅目昆虫。 Bumblebee (Apethymus kuri), Bumblebee (Athalia rosae), Bumblebee (Arge pagana), Bumblebee (Neodiprion sertifer), Bumblebee (Dryocosmus kuriphilus), Gantai (Eciton burchelli, Eciton schmitus), Eciton burchelli, Eciton schmitus Hymenoptera insects such as mandarina, bulldog ant (Myrmecia spp.), fire ant (Solenopsis spp.), pharaoh ant (Monomorium pharaonis).
エンマコオロギ(Teleogryllus emma)、ケラ(Gryllotalpa orientalis)、トノサマバッタ(Locusta migratoria)、コバネイナゴ(Oxya yezoensis)、サバクワタリバッタ(Schistocerca gregaria)等の直翅目昆虫。 Straight-legged insects such as Teleogryllus emma, Gryllotalpa orientalis, Locusta migratoria, Oxya yezoensis, Schistocerca gregaria and others.
トゲナシシロトビムシ(Onychiurus folsomi)、シベリアシロトビムシ(Onychiurus sibiricus)、キボシマルトビムシ(Bourletiella hortensis)等の粘管目昆虫。 Coleoptera insects such as Onychiurus folsomi, Onychiurus sibiricus and Bourletiella hortensis.
クロゴキブリ(Periplaneta fuliginosa)、ヤマトゴキブリ(Periplaneta japonica)、チャバネゴキブリ(Blattella germanica)等の網翅目昆虫。 Reticulate insects such as black cockroach (Periplaneta fuliginosa), cockroach (Periplaneta japonica), German cockroach (Blattella germanica).
イエシロアリ(Coptotermes formosanus)、ヤマトシロアリ(Reticulitermes speratus)、タイワンシロアリ(Odontotermes formosanus)等のシロアリ目昆虫。 Termite insects such as termites (Coptotermes formosanus), Yamato termites (Reticulitermes speratus), Taiwan termites (Odontotermes formosanus).
ネコノミ(Ctenocephalidae felis)、イヌノミ(Ctenocephalides canis)、ニワトリノミ(Echidnophaga gallinacea)、ヒトノミ(Pulex irritans)、ケオプスネズミノミ(Xenopsylla cheopis)等の等翅目昆虫。 Coleoptera insects such as cat fleas (Ctenocephalidae felis), dog fleas (Ctenocephalides canis), chicken fleas (Echidnophaga gallinacea), human fleas (Pulex irritans), keops rat fleas (Xenopsylla cheopis) and the like.
ニワトリオオハジラミ(Menacanthus stramineus)、ウシハジラミ(Bovicola bovis)等のハジラミ目昆虫。 White-headed insects such as chicken lice (Menacanthus stramineus) and bovine lice (Bovicola bovis).
ウシジラミ(Haematopinus eurysternus)、ブタジラミ(Haematopinus suis)、ウシホソジラミ(Linognathus vituli)、ケブカウシジラミ(Solenopotes capillatus)等のシラミ目昆虫。 Louse insects such as cattle lice (Haematopinus eurysternus), pig lice (Haematopinus suis), cattle white lice (Linognathus vituli), horned lice (Solenopotes capillatus) and the like.
シクラメンホコリダニ(Phytonemus pallidus)、チャノホコリダニ(Polyphagotarsonemus latus)、スジブトホコリダニ(Tarsonemus bilobatus)等のホコリダニ類。 Dust mites such as cyclamen dust mite (Phytonemus pallidus), chano dust mite (Polyphagotarsonemus latus), and Sudabuto dust mite (Tarsonemus bilobatus).
ハクサイダニ(Penthaleus erythrocephalus)、ムギダニ(Penthaleus major)等のハシリダニ類。 Spider mites such as cabbage mite (Penthaleus erythrocephalus) and wheat mite (Penthaleus major).
イネハダニ(Oligonychus shinkajii)、ミカンハダニ(Panonychus citri)、クワオオハダニ(Panonychus mori)、リンゴハダニ(Panonychus ulmi)、カンザワハダニ(Tetranychus kanzawai)、ナミハダニ(Tetranychus urticae)等のハダニ類。 Spider mites such as rice spider mite (Oligonychus shinkajii), citrus spider mite (Panonychus citri), blue spider mite (Panonychus mori), apple spider mite (Panonychus ulmi), Kanzawa spider mite (Tetranychus kanzawai), spider mite (Tetranychus urticae), etc.
チャノナガサビダニ(Acaphylla theavagrans)、チューリップサビダニ(Aceria tulipae)、トマトサビダニ(Aculops lycopersici)、ミカンサビダニ(Aculops pelekassi)、リンゴサビダニ(Aculus schlechtendali)、ニセナシサビダニ(Eriophyes chibaensis)、シトラスラストマイト(Phyllocoptruta oleivora)等のフシダニ類。 Chinese cabbage mite (Acaphylla theavagrans), tulip rust mite (Aceria tulipae), tomato rust mite (Aculops lycopersici), citrus red mite (Aculops pelekassi), apple rust mite (Aculus schlechtendali), black rust mite (Eriophyes chitrastrostrum) ) Etc.
ロビンネダニ(Rhizoglyphus robini)、ケナガコナダニ(Tyrophagus putrescentiae)、ホウレンソウケナガコナダニ(Tyrophagus similis)等のコナダニ類。 Acarids such as Robin tick (Rhizoglyphus robini), Tyrophagus putrescentiae, and Tyrophagus similis.
ミツバチヘギイタダニ(Varroa jacobsoni)等のハチダニ類。 Bee mites such as honeybee mite (Varroa jacobsoni).
オウシマダニ(Boophilus microplus)、クリイロコイタマダニ(Rhipicephalus sanguineus)、フタトゲチマダニ(Haemaphysalis longicornis)、キチマダニ(Haemophysalis flava)、ツリガネチマダニ(Haemophysalis campanulata)、ヤマトマダニ(Ixodes ovatus)、シュルツェマダニ(Ixodes persulcatus)、オオマダニ(Amblyomma spp.)、アミメマダニ(Dermacentor spp.)等のマダニ類。 Tick tick (Boophilus microplus), Rhipicephalus sanguineus, Tick tick (Haemaphysalis longicornis), Tick tick (Haemophysalis flava), Tick tick (Haemophysalis campanulata), Tick tick (Ixo tus tick) Tick such as Amblyomma spp.), Dermacentor spp.
イヌツメダニ(Cheyletiella yasguri)、ネコツメダニ(Cheyletiella blakei)等のツメダニ類。 Crawling ticks, such as the crayfish tick (Cheyletiella yasguri) and the cat crawfish tick (Cheyletiella blakei).
イヌニキビダニ(Demodex canis)、ネコニキビダニ(Demodex cati)などのニキビダニ類。 Acne mites, such as Inodex canis and Demodex cati.
ヒツジキュウセンダニ(Psoroptes ovis)等のキュウセンダニ類。 Cucumber mites such as sheep cucumber mites (Psoroptes ovis).
センコウヒゼンダニ(Sarcoptes scabiei)、ネコショウセンコウヒゼンダニ(Notoedres cati)、ニワトリヒゼンダニ(Knemidocoptes spp.)等のヒゼンダニ類。 Spider mites, such as Sarcoptes scabiei, Notoedres cati, and Knemidocoptes spp.
オカダンゴムシ(Armadillidium vulgare)等の甲殻類。 Crustacea such as Armadillidium vulgare.
スクミリンゴガイ(Pomacea canaliculata)、アフリカマイマイ(Achatina fulica)、ナメクジ(Meghimatium bilineatum)、チャコウラナメクジ(Limax Valentiana)、ウスカワマイマイ(Acusta despecta sieboldiana)、ミスジマイマイ(Euhadra peliomphala)等の腹足類。 Gastropods such as Pomacea canaliculata, African mussel (Achatina fulica), Slug (Meghimatium bilineatum), Chaukoura slug (Limax Valentiana), Uskawamai (Acusta despecta sieboldiana), Mishamai mai (Euhadra peliomphala).
ミナミネグサレセンチュウ(Prathylenchus coffeae)、キタネグサレセンチュウ(Prathylenchus penetrans)、クルミネグサレセンチュウ(Prathylenchus vulnus)、ジャガイモシストセンチュウ(Globodera rostochiensis)、ダイズシストセンチュウ(Heterodera glycines)、キタネコブセンチュウ(Meloidogyne hapla)、サツマイモネコブセンチュウ(Meloidogyne incognita)、イネシンガレセンチュウ(Aphelenchoides besseyi)、マツノザイセンチュウ(Bursaphelenchus xylophilus)等の線虫類。 Southern nematode nematode (Prathylenchus coffeae), Kitane-negususa nematode (Prathylenchus penetrans), Kurume rushes nematode (Prathylenchus vulnus), potato cyst nematode (Globodera rostochiensis), soybean cyst nematode (Heterodera lypter Nematodes such as root-knot nematodes (Meloidogyne incognita), rice-spotted nematodes (Aphelenchoides besseyi), and pine wood nematodes (Bursaphelenchus xylophilus).
また、本発明化合物を用いて防除しうる家畜、家禽、愛玩動物等の内部寄生虫としては具体的に、例えば、下記の生物が挙げられるが、本発明はこれらのみに限定されるものではない。 In addition, specific examples of endoparasites such as livestock, poultry, and pet animals that can be controlled using the compounds of the present invention include the following organisms, but the present invention is not limited to these. .
ヘモンクス属(Haemonchus)、トリコストロンギルス属(Trichostrongylus)、オステルターギヤ属(Ostertagia)、ネマトディルス属(Nematodirus)、クーペリア属(Cooperia)、アスカリス属(Ascaris)、ブノストムーム属(Bunostomum)、エスファゴストムーム属(Oesophagostomum)、チャベルチア属(Chabertia)、トリキュリス属(Trichuris)、ストロンギルス属(Storongylus)、トリコネマ属(Trichonema)、ディクチオカウルス属(Dictyocaulus)、キャピラリア属(Capillaria)、ヘテラキス属(Heterakis)、トキソカラ属(Toxocara)、アスカリディア属(Ascaridia)、オキシウリス属(Oxyuris)、アンキロストーマ属(Ancylostoma)、ウンシナリア属(Uncinaria)、トキサスカリス属(Toxascaris)、パラスカリス属(Parascaris)などの線虫類、
ブツヘレリア属(Wuchereria)、ブルージア属(Brugia)、オンコセルカ属(Onchoceca)、ディロフィラリア属(Dirofilaria)、ロア糸状虫属(Loa)などのフィラリア科(Filariidae)線虫類。
Haemonchus, Trichostrongylus, Ostertagia, Nematodirus, Cooperia, Ascaris, Bunostomum, Esphagostomum Genus (Oesophagostomum), Chabertia, Trichuris, Strongylus, Trichonema, Dictyocaulus, Capillaria, Heterakis ), Toxocara, Ascaridia, Oxyuris, Ancylostoma, Uncinaria, Toxacaris, Parascaris, and other nematodes ,
Filariidae nematodes such as Wuchereria, Blueia, Onchoceca, Dirofilaria and Loa.
ドラクンクルス属(Deacunculus)などの蛇状線虫科(Dracunculidae)線虫類。 Dracunculidae nematodes, such as the genus Deacunculus.
犬条虫(Dipylidium caninum)、猫条虫(Taenia taeniaeformis)、有鉤条虫(Taenia solium)、無鉤条虫(Taenia saginata)、縮小条虫(Hymenolepis diminuta)、ベネデン条虫(Moniezia benedeni)、広節裂頭条虫(Diphyllobothrium latum)、マンソン裂頭条虫(Diphyllobothrium erinacei)、単包条虫(Echinococcus granulosus)、多包条虫(Echinococcus multilocularis)などの条虫類。 Dogworms (Dipylidium caninum), caterpillars (Taenia taeniaeformis), rodents (Taenia solium), striped tapeworms (Taenia saginata), contracted tapeworms (Hymenolepis diminuta), Beneden tapeworms (Moniezia benedeni), Tapeworms such as Diphyllobothrium latum, Manson cleftworm (Diphyllobothrium erinacei), Echinococcus granulosus, Echinococcus multilocularis.
肝蛭(Fasciola hepatica,F.gigantica)、ウエステルマン肺吸虫(Paragonimus westermanii)、肥大吸虫(Fasciolopsic bruski)、膵吸虫(Eurytrema pancreaticum,E.coelomaticum)、肝吸虫(Clonorchis sinensis)、日本住血吸虫(Schistosoma japonicum)、ビルハルツ住血吸虫(Schistosoma haematobium)、マンソン住血吸虫(Schistosoma mansoni)などの吸虫類。 Fasciola hepatica (F. gigantica), Westermann lung fluke (Paragonimus westermanii), hypertrophic fluke (Fasciolopsic bruski), pancreatic fluke (Eurytrema pancreaticum, E. coelomaticum), liver fluke (Clonorchis sinensis), Schistosoma Schistosoma japonicum), Schistosoma haematobium, Schistosoma mansoni, etc.
エイメリア・テネラ(Eimeria tenella)、エイメリア・アセルブリナ(Eimeria acervulina)、エイメリア・ブルネッチ(Eimeria brunetti)、エイメリア・マクシマ(Eimeria maxima)、エイメリア・ネカトリクス(Eimeria necatrix)、エイメリア・ボビス(Eimeria bovis)、エイメリア・オビノイダリス(Eimeria ovinoidalis)のようなエイメリア類(Eimeria spp.)。 Eimeria tenella, Eimeria acervulina, Eimeria brunetti, Eimeria maxima, Eimeria necatrix, Eimeria bovis, Eimeria bovis Eimeria spp., Such as Eimeria ovinoidalis.
クルーズトリパノソーマ(Trypanosomsa cruzi)、リーシュマニア類(Leishmania spp.)、マラリア原虫(Plasmodium spp.)、バベシア類(Babesis spp.)、トリコモナス類(Trichomonadidae spp.)、ヒストモナス類(Histomanas spp.)、ジアルディア類(Giardia spp.)、トキソプラズマ類(Toxoplasma spp.)、赤痢アメーバ(Entamoeba histolytica)、タイレリア類(Theileria spp.)。 Trypanosomsa cruzi, Leishmania spp., Plasmodium spp., Babesis spp., Trichomonadidae spp., Histomanas spp., Giardia (Giardia spp.), Toxoplasma spp., Entamoeba histolytica, Theileria spp.
さらに、本発明化合物は、有機燐系化合物、カーバメート系化合物又はピレスロイド系化合物等の既存の殺虫剤に対して抵抗性の発達した有害生物に対しても有効である。 Furthermore, the compound of the present invention is also effective against pests that have developed resistance to existing insecticides such as organophosphorus compounds, carbamate compounds, and pyrethroid compounds.
すなわち、本発明化合物は、粘管目(トビムシ目)、網翅目(ゴキブリ目)、直翅目(バッタ目)、シロアリ目、総翅目(アザミウマ目)、半翅目(カメムシ目及びヨコバイ目)、鱗翅目(チョウ目)、鞘翅目(コウチュウ目)、膜翅目(ハチ目)、双翅目(ハエ目)、等翅目(ノミ目)及びシラミ目等の昆虫類、ダニ類、腹足類及び線虫類等に属する有害生物を低濃度で有効に防除することが出来る。一方、本発明化合物はホ乳類、魚類、甲殻類及び益虫(ミツバチ、マルハナバチ等の有用昆虫やツヤコバチ、アブラバチ、ヤドリバエ、ヒメハナカメムシ、カブリダニ等の天敵)に対してほとんど悪影響の無い極めて有用な特長を有している。 That is, the compound of the present invention is composed of the order of mucous eyes (Coleoptera), reticulates (Roaches), straight moths (Grasshoppers), termites, common moths (Thrips), hemimorphs (stink bugs and leafhoppers). Eyes), Lepidoptera (Lepidoptera), Coleoptera (Coleoptera), Hymenoptera (Hymenoptera), Diptera (Flyidae), Islamic (Flea), Liceid, and other insects, ticks In addition, pests belonging to gastropods and nematodes can be effectively controlled at low concentrations. On the other hand, the compounds of the present invention are extremely useful with little adverse effect on mammals, fish, crustaceans and beneficial insects (beneficial insects such as bees and bumblebees, natural enemies such as honeybees, wasps, mistletoe flies, mosquitoes, and mites). Has features.
本発明化合物を使用するにあたっては、通常適当な固体担体又は液体担体と混合し、更に所望により界面活性剤、浸透剤、展着剤、増粘剤、凍結防止剤、結合剤、固結防止剤、崩壊剤、消泡剤、防腐剤および分解防止剤等を添加して、液剤(soluble concentrate)、乳剤(emulsifiable concentrate)、水和剤(wettable powder)、水溶剤(water soluble powder)、顆粒水和剤(water dispersible granule)、顆粒水溶剤(water soluble granule)、懸濁剤(suspension concentrate)、乳濁剤(concentrated emulsion)、サスポエマルジョン(suspoemulsion)、マイクロエマルジョン(microemulsion)、粉剤(dustable powder)、粒剤(granule)錠剤(tablet)および乳化性ゲル剤(emulsifiable gel)等任意の剤型の製剤にて実用に供することができる。また、省力化および安全性向上の観点から、上記任意の剤型の製剤を、水溶性カプセルおよび水溶性フィルムの袋等の水溶性包装体に封入して供することもできる。 When using the compound of the present invention, it is usually mixed with a suitable solid carrier or liquid carrier, and if desired, a surfactant, penetrant, spreading agent, thickener, antifreezing agent, binder, anti-caking agent , Disintegrating agents, antifoaming agents, preservatives and anti-degradation agents, etc., and soluble concentrate, emulsion (emulsifiable concentrate), wettable powder, water-soluble powder, granular water Water dispersible granule, water soluble granule, suspension concentrate, concentrated emulsion, suspoemulsion, microemulsion, dustable powder ), Granule tablets, and emulsifiable gels, and can be put to practical use. Further, from the viewpoint of labor saving and safety improvement, the preparations of any of the above dosage forms can be provided by being enclosed in a water-soluble package such as a water-soluble capsule and a bag of a water-soluble film.
固体担体としては、例えば石英、方解石、海泡石、ドロマイト、チョーク、カオリナイト、パイロフィライト、セリサイト、ハロサイト、メタハロサイト、木節粘土、蛙目粘土、陶石、ジークライト、アロフェン、シラス、きら、タルク、ベントナイト、活性白土、酸性白土、軽石、アタパルジャイト、ゼオライトおよび珪藻土等の天然鉱物質、例えば焼成クレー、パーライト、シラスバルーン、バーミキュライト、アタパルガスクレーおよび焼成珪藻土等の天然鉱物質の焼成品、例えば炭酸マグネシウム、炭酸カルシウム、炭酸ナトリウム、炭酸水素ナトリウム、硫酸アンモニウム、硫酸ナトリウム、硫酸マグネシウム、リン酸水素二アンモニウム、リン酸二水素アンモニウムおよび塩化カリウム等の無機塩類、例えばブドウ糖、果糖、しょ糖および乳糖などの糖類、例えば澱粉、粉末セルロースおよびデキストリン等の多糖類、例えば尿素、尿素誘導体、安息香酸および安息香酸の塩等の有機物、例えば木粉、コルク粉、トウモロコシ穂軸、クルミ殻およびタバコ茎等の植物類、フライアッシュ、ホワイトカーボン(例えば、含水合成シリカ、無水合成シリカおよび含水合成シリケート等)ならびに肥料等が挙げられる。 Examples of the solid carrier include quartz, calcite, gypsum, dolomite, chalk, kaolinite, pyrophyllite, sericite, halosite, metahalosite, kibushi clay, glazed clay, porcelain stone, siegrite, and allophane. Natural minerals such as shirasu, kira, talc, bentonite, activated clay, acid clay, pumice, attapulgite, zeolite and diatomaceous earth, for example, calcined clay, perlite, shirasu balloon, vermiculite, attapulgus clay and calcined diatomaceous earth Baked products such as magnesium carbonate, calcium carbonate, sodium carbonate, sodium bicarbonate, ammonium sulfate, sodium sulfate, magnesium sulfate, diammonium hydrogen phosphate, ammonium dihydrogen phosphate and potassium chloride, such as glucose, fructose , And Sugars such as sugar and lactose, polysaccharides such as starch, powdered cellulose and dextrin, organic materials such as urea, urea derivatives, benzoic acid and benzoic acid salts, such as wood flour, cork flour, corn cobs, walnut shells and Examples include plants such as tobacco stalks, fly ash, white carbon (for example, hydrous synthetic silica, anhydrous synthetic silica, hydrous synthetic silicate, etc.) and fertilizers.
液体担体としては、例えばキシレン、アルキル(C9又はC10等)ベンゼン、フェニルキシリルエタンおよびアルキル(C1又はC3等)ナフタレン等の芳香族炭化水素類、マシン油、ノルマルパラフィン、イソパラフィンおよびナフテン等の脂肪族炭化水素類、ケロシン等の芳香族炭化水素と脂肪族炭化水素の混合物、エタノール、イソプロパノール、シクロヘキサノール、フェノキシエタノールおよびベンジルアルコール等のアルコール、エチレングリコール、プロピレングリコール、ジエチレングリコール、ヘキシレングリコール、ポリエチレングリコールおよびポリプロピレングリコール等の多価アルコール、プロピルセロソルブ、ブチルセロソルブ、フェニルセロソルブ、プロピレングリコールモノメチルエーテル、プロピレングリコールモノエチルエーテル、プロピレングリコールモノプロピルエーテル、プロピレングリコールモノブチルエーテルおよびプロピレングリコールモノフェニルエーテル等のエーテル、アセトフェノン、シクロヘキサノンおよびγ−ブチロラクトン等のケトン、脂肪酸メチルエステル、コハク酸ジアルキルエステル、グルタミン酸ジアルキルエステル、アジピン酸ジアルキルエステルおよびフタル酸ジアルキルエステル等のエステル、N−アルキル(C1、C8又はC12等)ピロリドン等の酸アミド、大豆油、アマニ油、ナタネ油、ヤシ油、綿実油およびヒマシ油等の油脂、ジメチルスルホキシドならびに水が挙げられる。 Examples of the liquid carrier include xylene, alkyl (C 9 or C 10 etc.) benzene, phenyl xylyl ethane and alkyl (C 1 or C 3 etc.) naphthalene and other aromatic hydrocarbons, machine oil, normal paraffin, isoparaffin and Aliphatic hydrocarbons such as naphthene, mixtures of aromatic and aliphatic hydrocarbons such as kerosene, alcohols such as ethanol, isopropanol, cyclohexanol, phenoxyethanol and benzyl alcohol, ethylene glycol, propylene glycol, diethylene glycol, hexylene glycol , Polyhydric alcohols such as polyethylene glycol and polypropylene glycol, propyl cellosolve, butyl cellosolve, phenyl cellosolve, propylene glycol monomethyl ether, propylene glycol Ethers such as ethyl monoethyl ether, propylene glycol monopropyl ether, propylene glycol monobutyl ether and propylene glycol monophenyl ether, ketones such as acetophenone, cyclohexanone and γ-butyrolactone, fatty acid methyl esters, dialkyl esters of succinic acid, dialkyl esters of glutamic acid, adipine esters such as dialkyl ester and dialkyl phthalate esters, N- alkyl (C 1, C 8 or C 12, etc.) acid amide pyrrolidone, soybean oil, linseed oil, rapeseed oil, coconut oil, such as cottonseed oil and castor oil Examples include fats and oils, dimethyl sulfoxide and water.
これら固体および液体担体は、単独で用いても2種以上を併用してもよい。 These solid and liquid carriers may be used alone or in combination of two or more.
界面活性剤としては、例えばポリオキシエチレンアルキルエーテル、ポリオキシエチレンアルキル(モノ又はジ)フェニルエーテル、ポリオキシエチレン(モノ、ジ又はトリ)スチリルフェニルエーテル、ポリオキシエチレンポリオキシプロピレンブロックコポリマー、ポリオキシエチレン脂肪酸(モノ又はジ)エステル、ソルビタン脂肪酸エステル、ポリオキシエチレンソルビタン脂肪酸エステル、ヒマシ油エチレンオキサイド付加物、アセチレングリコール、アセチレンアルコール、アセチレングリコールのエチレンオキサイド付加物、アセチレンアルコールのエチレンオキサイド付加物およびアルキルグリコシド等のノニオン性界面活性剤、アルキル硫酸エステル塩、アルキルベンゼンスルホン酸塩、リグニンスルホン酸塩、アルキルスルホコハク酸塩、ナフタレンスルホン酸塩、アルキルナフタレンスルホン酸塩、ナフタレンスルホン酸のホルマリン縮合物の塩、アルキルナフタレンスルホン酸のホルマリン縮合物の塩、ポリオキシエチレンアルキルエーテル硫酸又は燐酸エステル塩、ポリオキシエチレン(モノ又はジ)アルキルフェニルエーテル硫酸又は燐酸エステル塩、ポリオキシエチレン(モノ、ジ又はトリ)スチリルフェニルエーテル硫酸又は燐酸エステル塩、ポリカルボン酸塩(例えば、ポリアクリル酸塩、ポリマレイン酸塩およびマレイン酸とオレフィンとの共重合物等)およびポリスチレンスルホン酸塩等のアニオン性界面活性剤、アルキルアミン塩およびアルキル4級アンモニウム塩等のカチオン性界面活性剤、アミノ酸型およびベタイン型等の両性界面活性剤、シリコーン系界面活性剤ならびにフッ素系界面活性剤が挙げられる。 Examples of the surfactant include polyoxyethylene alkyl ether, polyoxyethylene alkyl (mono or di) phenyl ether, polyoxyethylene (mono, di or tri) styryl phenyl ether, polyoxyethylene polyoxypropylene block copolymer, polyoxyethylene Ethylene fatty acid (mono or di) ester, sorbitan fatty acid ester, polyoxyethylene sorbitan fatty acid ester, castor oil ethylene oxide adduct, acetylene glycol, acetylene alcohol, ethylene oxide adduct of acetylene glycol, ethylene oxide adduct of acetylene alcohol and alkyl Nonionic surfactants such as glycosides, alkyl sulfate esters, alkylbenzene sulfonates, lignin sulfonates, alkyls Rufosuccinate, naphthalene sulfonate, alkyl naphthalene sulfonate, salt of formalin condensate of naphthalene sulfonic acid, salt of formalin condensate of alkyl naphthalene sulfonic acid, polyoxyethylene alkyl ether sulfate or phosphate ester salt, polyoxyethylene (Mono or di) alkyl phenyl ether sulfate or phosphate ester salt, polyoxyethylene (mono, di or tri) styryl phenyl ether sulfate or phosphate ester salt, polycarboxylate (eg polyacrylate, polymaleate and maleate) Copolymer of acid and olefin, etc.) and anionic surfactants such as polystyrene sulfonate, cationic surfactants such as alkylamine salts and alkyl quaternary ammonium salts, and amphoteric interfaces such as amino acid type and betaine type Sexual agents, silicone-based surfactants and fluorinated surfactants.
これら界面活性剤の含有量は、特に限定されるものではないが、本発明の製剤100重量部に対し、通常0.05〜20重量部の範囲が望ましい。また、これら界面活性剤は、単独で用いても2種以上を併用してもよい。 The content of these surfactants is not particularly limited, but is usually preferably in the range of 0.05 to 20 parts by weight with respect to 100 parts by weight of the preparation of the present invention. These surfactants may be used alone or in combination of two or more.
本発明化合物の施用薬量は適用場面、施用時期、施用方法、栽培作物等により差異は有るが、一般には有効成分量としてヘクタール(ha)当たり0.005〜50kg程度が適当である。 The application amount of the compound of the present invention varies depending on the application scene, application time, application method, cultivated crops, etc., but generally 0.005 to 50 kg per hectare (ha) is appropriate as the amount of active ingredient.
一方、家畜及び愛玩動物としての哺乳動物および鳥類の外部又は内部寄生虫の防除に本発明化合物を使用するにあたっては、有効量の本発明化合物を製剤用添加物とともに経口投与、注射(筋肉内、皮下、静脈内、腹腔内)などの非経口投与;浸漬、スプレー、入浴、洗浄、滴下(pouring-on)およびスポッティング(spotting-on)並びにダスティング(dusting)などの経皮投与;経鼻投与により投与することができる。本発明化合物はまた、細片、プレート、バンド、カラー、イヤー・マーク(ear mark)、リム(limb)・バンド、標識装置などを用いた成形製品により投与することができる。投与にあたっては本発明化合物を投与経路に適した任意の剤型とすることができる。 On the other hand, when using the compound of the present invention for the control of the ectoparasites of mammals and birds as domestic animals and pets, an effective amount of the compound of the present invention is administered orally together with injection additives (intramuscular, Parenteral administration such as subcutaneous, intravenous, intraperitoneal; transdermal administration such as immersion, spraying, bathing, washing, pouring-on and spotting-on and dusting; nasal administration Can be administered. The compounds of the present invention can also be administered by molded products using strips, plates, bands, collars, ear marks, limb bands, labeling devices and the like. In administration, the compound of the present invention can be in any dosage form suitable for the administration route.
調製される任意の剤型としては、粉剤、粒剤、水和剤、ペレット、錠剤、大丸薬、カプセル剤、活性化合物を含む成形製品などの固体調製物;注射用液剤、経口用液剤、皮膚上又は体腔中に用いる液剤;滴下(Pour-on)剤、点下(Spot-on)剤、フロアブル剤、乳剤などの溶液調製物;軟膏剤、ゲルなどの半固体調製物などが挙げられる。 Arbitrary forms to be prepared include solid preparations such as powders, granules, wettable powders, pellets, tablets, large pills, capsules, molded products containing active compounds; injection solutions, oral solutions, skin Liquid preparations used above or in body cavities; solution preparations such as Pour-on agents, spot-on agents, flowable agents and emulsions; semi-solid preparations such as ointments and gels.
固体調製物は、主に経口投与あるいは水などで希釈して経皮投与にあるいは環境処理にて用いることができる。固体調製物は、活性化合物を必要ならば補助剤を加えて適当な賦形剤と共に混合し、そして所望の形状に変えることにより調製できる。適当な賦形剤としては、例えば炭酸塩、炭酸水素塩、リン酸塩、酸化アルミニウム、シリカ、粘土などの無機物質、糖、セルロース、粉砕された穀物、澱粉などの有機物質がある。 The solid preparation can be used mainly for oral administration or diluted with water for transdermal administration or environmental treatment. Solid preparations can be prepared by adding the active compound, if necessary, with adjuncts, mixing with appropriate excipients, and converting to the desired shape. Suitable excipients include, for example, inorganic substances such as carbonates, bicarbonates, phosphates, aluminum oxides, silicas, clays, and organic substances such as sugars, cellulose, crushed grains, and starches.
注射用液剤は、静脈内、筋肉内および皮下に投与できる、注射用液剤は、活性化合物を適当な溶媒に溶解させ、そして必要ならば可溶化剤、酸、塩基、緩衝用塩、酸化防止剤および保護剤などの添加剤を加えることにより調製できる。適当な溶媒としては、水、エタノール、ブタノール、ベンジルアルコール、グリセリン、プロピレングリコール、ポリエチレングリコール、N−メチルピロリドン並びにこれらの混合物、生理学的に許容しうる植物油、注射に適する合成油などがあげられる。可溶化剤としては、ポリビニルピロリドン、ポリオキシエチル化されたヒマシ油およびポリオキシエチル化されたソルビタンエステルなどがあげられる。保護剤には、ベンジルアルコール、トリクロロブタノール、p−ヒドロキシ安息香酸エステルおよびn−ブタノールなどがある。 Injection solutions can be administered intravenously, intramuscularly and subcutaneously. Injection solutions dissolve the active compound in a suitable solvent and, if necessary, solubilizers, acids, bases, buffer salts, antioxidants. And can be prepared by adding additives such as protective agents. Suitable solvents include water, ethanol, butanol, benzyl alcohol, glycerin, propylene glycol, polyethylene glycol, N-methylpyrrolidone and mixtures thereof, physiologically acceptable vegetable oils, synthetic oils suitable for injection, and the like. Examples of solubilizers include polyvinylpyrrolidone, polyoxyethylated castor oil, and polyoxyethylated sorbitan ester. Protecting agents include benzyl alcohol, trichlorobutanol, p-hydroxybenzoic acid ester and n-butanol.
経口液剤は直接又は希釈して投与することができる。注射用液剤と同様に調製することができる。 Oral solutions can be administered directly or diluted. It can be prepared in the same manner as an injectable solution.
フロアブル剤、乳剤、などは直接又は希釈して経皮的に、又は環境処理にて投与できる。 Flowables, emulsions, etc. can be administered directly or diluted transdermally or by environmental treatment.
皮膚上で用いる液剤は、滴下し、広げ、すり込み、噴霧し、散布するか、又は浸漬(浸漬、入浴又は洗浄)により塗布することにより投与できる。これらの液剤は注射用液剤と同様に調製できる。 Solutions used on the skin can be administered by dripping, spreading, rubbing, spraying, spraying or applying by dipping (immersion, bathing or washing). These solutions can be prepared in the same manner as injection solutions.
滴下(Pour-on)剤および点下(Spot-on)剤は皮膚の限定された場所に滴下するか、又は噴霧し、これにより活性化合物を皮膚に浸漬させそして全身的に作用させることができる。滴下剤および点下剤は、有効成分を適当な皮膚適合性溶媒又は溶媒混合物に溶解するか、懸濁させるか又は乳化することにより調製できる。必要ならば、界面活性剤、着色剤、吸収促進物質、酸化防止剤、光安定剤および接着剤などの補助剤を加えてもよい。 Pour-on and spot-on agents can be dripped or sprayed onto a limited area of the skin, so that the active compound can be immersed in the skin and act systemically . Drops and drop preparations can be prepared by dissolving, suspending or emulsifying the active ingredient in suitable skin-compatible solvents or solvent mixtures. If necessary, auxiliary agents such as surfactants, colorants, absorption promoting substances, antioxidants, light stabilizers and adhesives may be added.
適当な溶媒としては、水、アルカノール、グリコール、ポリエチレングリコール、ポリプロピレングリコール、グリセリン、ベンジルアルコール、フェニルエタノール、フェノキシエタノール、酢酸エチル、酢酸ブチル、安息香酸ベンジル、ジプロピレングリコールモノメチルエーテル、ジエチレングリコールモノブチルエーテル、アセトン、メチルエチルケトン、芳香族および/又は脂肪族炭化水素、植物又は合成油、DMF、流動パラフィン、軽質流動パラフィン、シリコーン、ジメチルアセトアミド、N−メチルピロリドン又は2,2−ジメチル−4−オキシ−メチレン−1,3−ジオキソランが挙げられる。吸収促進物質には、DMSO、ミリスチン酸イソプロピル、ペラルゴン酸ジプロピレングリコール、シリコーン油、脂肪族エステル、トリグリセリドおよび脂肪アルコールが挙げられる。酸化防止剤には、亜硫酸塩、メタ重亜硫酸塩、アスコルビン酸、ブチルヒドロキシトルエン、ブチルヒドロキシアニソールおよびトコフェロールが挙げられる。 Suitable solvents include water, alkanol, glycol, polyethylene glycol, polypropylene glycol, glycerin, benzyl alcohol, phenylethanol, phenoxyethanol, ethyl acetate, butyl acetate, benzyl benzoate, dipropylene glycol monomethyl ether, diethylene glycol monobutyl ether, acetone, Methyl ethyl ketone, aromatic and / or aliphatic hydrocarbons, vegetable or synthetic oil, DMF, liquid paraffin, light liquid paraffin, silicone, dimethylacetamide, N-methylpyrrolidone or 2,2-dimethyl-4-oxy-methylene-1, 3-dioxolane is mentioned. Absorption enhancers include DMSO, isopropyl myristate, dipropylene glycol pelargonate, silicone oil, aliphatic esters, triglycerides and fatty alcohols. Antioxidants include sulfites, metabisulfites, ascorbic acid, butylhydroxytoluene, butylhydroxyanisole and tocopherol.
乳剤は、経口投与、経皮投与又は注射として投与できる。乳剤は、有効成分を疎水性相又は親水性相に溶解させ、このものを適当な乳化剤により、必要ならばさらに着色剤、吸収促進物質、保護剤、酸化防止剤、遮光剤および増粘物質などの補助剤と共に他の相の溶媒と均質化することにより調製できる。 The emulsion can be administered orally, transdermally or as an injection. In emulsions, active ingredients are dissolved in a hydrophobic phase or a hydrophilic phase, and this is further added with a suitable emulsifier, and if necessary, a colorant, an absorption promoting substance, a protective agent, an antioxidant, a light-shielding agent, a thickening substance, etc. Can be prepared by homogenizing with other phase solvents together with other auxiliary agents.
疎水性相(油)としては、パラフィン油、シリコーン油、ゴマ油、アーモンド油、ヒマシ油、合成トリグリセリド、ステアリン酸エチル、アジピン酸ジーn−ブチリル、ラウリル酸ヘキシル、ペラルゴン酸ジプロピレングリコール、分枝鎖状の短鎖長脂肪酸と鎖長C16〜C18の飽和脂肪酸とのエステル、ミリスチン酸イソプロピル、パルミチン酸イソプロピル、鎖長C12〜C18の飽和脂肪アルコールのカプリル/カプリン酸エステル、ステアリン酸イソプロピル、オレイン酸オレイル、オレイン酸デシル、オレイン酸エチル、乳酸エチル、ワックス状脂肪酸エステル、フタル酸ジブチル、アジピン酸ジイソプロピル、イソトリデシルアルコール、2−オクチルドデカノール、セチルステアリルアルコール、オレイルアルコールが挙げられる。 As hydrophobic phase (oil), paraffin oil, silicone oil, sesame oil, almond oil, castor oil, synthetic triglyceride, ethyl stearate, di-n-butyryl adipate, hexyl laurate, dipropylene glycol pelargonate, branched chain Of a short fatty acid having a chain length and a saturated fatty acid having a chain length of C16 to C18, isopropyl myristate, isopropyl palmitate, capryl / caprate of a saturated fatty alcohol having a chain length of C12 to C18, isopropyl stearate, oleyl oleate Decyl oleate, ethyl oleate, ethyl lactate, waxy fatty acid ester, dibutyl phthalate, diisopropyl adipate, isotridecyl alcohol, 2-octyldodecanol, cetyl stearyl alcohol, oleyl alcohol It is.
親水性相としては、水、プロピレングリコール、グリセリン、ソルビトールが挙げられる。 Examples of the hydrophilic phase include water, propylene glycol, glycerin, and sorbitol.
乳化剤としては、ポリオキシエチル化されたヒマシ油、ポリオキシエチル化されたモノオレフィン酸ソルビタン、モノステアリン酸ソルビタン、モノステアリン酸グリセリン、ステアリン酸ポリオキシエチル、アルキルフェノールポリグリコールエーテルなどの非イオン性界面活性剤;N−ラウリル−β−イミノジプロピオン酸二ナトリウム、レシチンなどの両性界面活性剤;ラウリル硫酸ナトリウム、脂肪アルコール硫酸エーテル、モノ/ジアルキルポリグリコールオルトリン酸エステルのモノエタノールアミン塩などの陰イオン性界面活性剤;塩化セチルトリメチルアンモニウムなどの陽イオン性界面活性剤などが挙げられる。 Emulsifiers include nonionic interfaces such as polyoxyethylated castor oil, polyoxyethylated sorbitan monoolefin acid, sorbitan monostearate, glyceryl monostearate, polyoxyethyl stearate, alkylphenol polyglycol ether, etc. Activators; amphoteric surfactants such as disodium N-lauryl-β-iminodipropionate and lecithin; anions such as sodium lauryl sulfate, fatty alcohol sulfate ether, monoethanolamine salt of mono / dialkyl polyglycol orthophosphate Surfactants; cationic surfactants such as cetyltrimethylammonium chloride.
他の補助剤として、カルボキシメチルセルロース、メチルセルロース、ポリアクリレート、アルギネート、ゼラチン、アラビアゴム、ポリビニルピロリドン、ポリビニルアルコール、メチルビニルエーテル、無水マレイン酸の共重合体、ポリエチレングリコール、ワックス、コロイド状シリカが挙げられる。 Other adjuvants include carboxymethyl cellulose, methyl cellulose, polyacrylate, alginate, gelatin, gum arabic, polyvinyl pyrrolidone, polyvinyl alcohol, methyl vinyl ether, a copolymer of maleic anhydride, polyethylene glycol, wax, colloidal silica.
半固体調製物は皮膚上に塗布するか、もしくは広げるか、又は体腔中に導入することにより投与できる。ゲルは注射用液剤について上記したように調製した溶液に、軟膏状の粘稠性を有する透明な物質を生じさせるに十分なシックナーを加えることにより調製できる。 Semi-solid preparations can be administered by application on the skin or spreading or introduction into body cavities. Gels can be prepared by adding sufficient thickener to a solution prepared as described above for an injectable solution to produce a clear material having an ointment-like consistency.
次に本発明化合物を用いる場合の製剤の配合例を示す。但し本発明の配合例は、これらのみに限定されるものではない。なお、以下の配合例において「部」は重量部を意味する。 Next, formulation examples of the preparation when using the compound of the present invention are shown. However, the formulation examples of the present invention are not limited to these. In the following formulation examples, “parts” means parts by weight.
〔水和剤〕
本発明化合物 0.1〜80部
固体担体 5〜98.9部
界面活性剤 1〜10部
その他 0〜5部
その他として、例えば固結防止剤、分解防止剤等があげれらる。
[Wettable powder]
Compound of the present invention 0.1 to 80 parts Solid carrier 5 to 98.9 parts Surfactant 1 to 10 parts Others 0 to 5 parts Other examples include anti-caking agents and decomposition inhibitors.
〔乳剤〕
本発明化合物 0.1〜30部
液体担体 45〜95部
界面活性剤 4.9〜15部
その他 0〜10部
その他として、例えば展着剤、分解防止剤等が挙げられる。
〔emulsion〕
Compound of the present invention 0.1-30 parts Liquid carrier 45-95 parts Surfactant 4.9-15 parts Others 0-10 parts Others include, for example, spreading agents, decomposition inhibitors, and the like.
〔懸濁剤〕
本発明化合物 0.1〜70部
液体担体 15〜98.89部
界面活性剤 1〜12部
その他 0.01〜30部
その他として、例えば凍結防止剤、増粘剤等が挙げられる。
[Suspension]
Compound of the present invention 0.1 to 70 parts Liquid carrier 15 to 98.89 parts Surfactant 1 to 12 parts Others 0.01 to 30 parts Others include, for example, antifreezing agents and thickeners.
〔顆粒水和剤〕
本発明化合物 0.1〜90部
固体担体 0〜98.9部
界面活性剤 1〜20部
その他 0〜10部
その他として、例えば結合剤、分解防止剤等が挙げられる。
[Granule wettable powder]
Compound of the present invention 0.1 to 90 parts Solid carrier 0 to 98.9 parts Surfactant 1 to 20 parts Others 0 to 10 parts Others include, for example, binders and decomposition inhibitors.
〔液剤〕
本発明化合物 0.01〜70部
液体担体 20〜99.99部
その他 0〜10部
その他として、例えば凍結防止剤、展着剤等が挙げられる。
[Liquid]
Compound of the present invention 0.01 to 70 parts Liquid carrier 20 to 99.99 parts Others 0 to 10 parts Other examples include antifreezing agents and spreading agents.
〔粒剤〕
本発明化合物 0.01〜80部
固体担体 10〜99.99部
その他 0〜10部
その他として、例えば結合剤、分解防止剤等が挙げられる。
[Granule]
Compound of the present invention 0.01 to 80 parts Solid carrier 10 to 99.99 parts Others 0 to 10 parts Others include, for example, binders, decomposition inhibitors and the like.
〔粉剤〕
本発明化合物 0.01〜30部
固体担体 65〜99.99部
その他 0〜5部
その他として、例えばドリフト防止剤、分解防止剤等が挙げられる。
[Dust]
Compound of the present invention 0.01 to 30 parts Solid support 65 to 99.99 parts Others 0 to 5 parts Other examples include a drift inhibitor and a decomposition inhibitor.
次に、本発明化合物を有効成分とする製剤例をより具体的に示すが、本発明はこれらに限定されるものではない。 Next, although the formulation example which uses this invention compound as an active ingredient is shown more concretely, this invention is not limited to these.
尚、以下の配合例において、「部」は重量部を意味する。 In the following formulation examples, “parts” means parts by weight.
〔配合例1〕水和剤
本発明化合物No.1-001 20部
パイロフィライト 74部
ソルポール5039 4部
(非イオン性界面活性剤とアニオン性界面活性剤との混合物:東邦化学工業(株)商品名)
カープレックス#80D 2部
(合成含水珪酸:塩野義製薬(株)商品名)
以上を均一に混合粉砕して水和剤とする。
[Formulation Example 1] wettable powder Compound No.1-001 20 parts pyrophyllite 74 parts Solpol 5039 4 parts (mixture of nonionic surfactant and anionic surfactant: Toho Chemical Co., Ltd.) Product name)
Carplex # 80D 2 parts (Synthetic hydrous silicic acid: Shionogi & Co., Ltd. trade name)
The above is uniformly mixed and ground to obtain a wettable powder.
〔配合例2〕乳 剤
本発明化合物No.1-001 5部
キシレン 75部
N−メチルピロリドン 15部
ソルポール2680 5部
(非イオン性界面活性剤とアニオン性界面活性剤との混合物:東邦化学工業(株)商品名)
以上を均一に混合して乳剤とする。
[Formulation Example 2] Milk Compound of the present invention No.1-001 5 parts Xylene 75 parts N-methylpyrrolidone 15 parts Solpol 2680 5 parts (mixture of nonionic surfactant and anionic surfactant: Toho Chemical Industry (Product name)
The above is uniformly mixed to obtain an emulsion.
〔配合例3〕懸濁剤
本発明化合物No.1-001 25部
アグリゾールS−710 10部
(非イオン性界面活性剤:花王(株)商品名)
ルノックス1000C 0.5部
(アニオン性界面活性剤:東邦化学工業(株)商品名)
キサンタンガム 0.2部
水 64.3部
以上を均一に混合した後、湿式粉砕して懸濁剤とする。
[Formulation Example 3] Suspension Agent Compound No.1-001 25 parts Agrisol S-710 10 parts (Nonionic Surfactant: Kao Corporation trade name)
LUNOX 1000C 0.5 part (anionic surfactant: Toho Chemical Industries, Ltd. trade name)
Xanthan gum 0.2 parts water 64.3 parts After uniformly mixing the above, wet pulverize to make a suspension.
〔配合例4〕顆粒水和剤
本発明化合物No.1-001 75部
ハイテノールNE-15 5部
(アニオン性界面活性剤:第一工業製薬(株)商品名)
バニレックスN 10部
(アニオン性界面活性剤:日本製紙(株)商品名)
カープレックス#80D 10部
(合成含水珪酸:塩野義製薬(株)商品名)
以上を均一に混合粉砕した後、少量の水を加えて撹拌混合し、押出式造粒機で造粒し、乾燥して顆粒水和剤とする。
[Composition Example 4] Granule wettable powder Compound No.1-001 of the present invention 75 parts Hytenol NE-15 5 parts (anionic surfactant: Daiichi Kogyo Seiyaku Co., Ltd. trade name)
Vanillex N 10 parts (anionic surfactant: Nippon Paper Industries Co., Ltd. trade name)
Carplex # 80D 10 parts (Synthetic hydrous silicic acid: Shionogi Pharmaceutical Co., Ltd. trade name)
After uniformly mixing and pulverizing the above, a small amount of water is added, stirred and mixed, granulated with an extrusion granulator, and dried to obtain a granulated wettable powder.
〔配合例5〕粒剤
本発明化合物No.1-001 5部
ベントナイト 50部
タルク 45部
以上を均一に混合粉砕した後、少量の水を加えて撹拌混合し、押出式造粒機で造粒し、乾燥して粒剤とする。
[Formulation Example 5] Granule Compound No. 1-001 of the present invention 5 parts Bentonite 50 parts Talc 45 parts After uniformly mixing and pulverizing the above, a small amount of water is added and mixed with stirring, and granulated with an extrusion granulator. And dried into granules.
〔配合例6〕粉剤
本発明化合物No.1-001 3部
カープレックス#80D 0.5部
(合成含水珪酸:塩野義製薬(株)商品名)
カオリナイト 95部
リン酸ジイソプロピル 1.5部
以上を均一に混合粉砕して粉剤とする。
[Formulation Example 6] Powder Compound of the present invention No.1-001 3 parts Carplex # 80D 0.5 part (Synthetic hydrous silicic acid: Shionogi Pharmaceutical Co., Ltd. trade name)
Kaolinite 95 parts Diisopropyl phosphate 1.5 parts The above is uniformly mixed and ground to obtain a powder.
使用に際しては、上記製剤を水で1〜10000倍に希釈して、又は希釈せずに直接散布する。 In use, the above preparation is diluted 1 to 10000 times with water or sprayed directly without dilution.
〔配合例7〕水和剤調製物
本発明化合物No.1-001 25部
ジイソブチルナフタレンスルホン酸ナトリウム 1部
n−ドデシルベンゼンスルホン酸カルシウム 10部
アルキルアリール ポリグリコールエーテル 12部
ナフタレンスルホン酸ホルマリン縮合物のナトリウム塩 3部
エマルジョン型シリコーン 1部
二酸化ケイ素 3部
カオリン 45部
〔配合例8〕水溶性濃厚剤調製物
本発明化合物No.1-001 20部
ポリオキシエチレンラウリルエーテル 3部
ジオクチルスルホコハク酸ナトリウム 3.5部
ジメチルスルホキシド 37部
2−プロパノール 36.5部
〔配合例9〕噴霧用液剤
本発明化合物No.1-001 2部
ジメチルスルホキシド 10部
2−プロパノール 35部
アセトン 53部
〔配合例10〕経皮投与用液剤
本発明化合物No.1-001 5部
ヘキシレングリコール 50部
イソプロパノール 45部
〔配合例11〕経皮投与用液剤
本発明化合物No.1-001 5部
プロピレングリコールモノメチルエーテル 50部
ジプロピレングリコール 45部
〔配合例12〕経皮投与(滴下)用液剤
本発明化合物No.1-001 2部
軽質流動パラフィン 98部
〔配合例13〕経皮投与(滴下)用液剤
本発明化合物No.1-001 2部
軽質流動パラフィン 58部
オリーブ油 30部
ODO−H 9部
信越シリコーン 1部
また、本発明化合物を農薬として使用する場合には、必要に応じて製剤時又は散布時に他種の除草剤、各種殺虫剤、殺ダニ剤、殺線虫剤、殺菌剤、植物生長調節剤、共力剤、肥料、土壌改良剤等と混合施用しても良い。
[Formulation Example 7] wettable powder preparation Compound No. 1-001 of the present invention 25 parts sodium diisobutylnaphthalenesulfonate 1 part calcium n-dodecylbenzenesulfonate 10 parts alkylaryl polyglycol ether 12 parts naphthalenesulfonic acid formalin condensate Sodium salt 3 parts Emulsion type silicone 1 part Silicon dioxide 3 parts Kaolin 45 parts [Formulation Example 8] Water-soluble thickener preparation Compound No.1-001 20 parts Polyoxyethylene lauryl ether 3 parts Sodium dioctyl sulfosuccinate 3. 5 parts dimethyl sulfoxide 37 parts 2-propanol 36.5 parts [Formulation Example 9] Solution for spraying the present compound No.1-001 2 parts dimethyl sulfoxide 10 parts 2-propanol 35 parts acetone 53 parts [Formulation Example 10] transdermal Solution for administration The present compound No.1-001 5 Parts hexylene glycol 50 parts isopropanol 45 parts [Formulation Example 11] Solution for transdermal administration Compound No. 1-001 5 parts propylene glycol monomethyl ether 50 parts Dipropylene glycol 45 parts [Formulation example 12] transdermal administration (instillation) ) Solution for the Invention Compound No.1-001 2 parts Light Liquid Paraffin 98 parts [Formulation Example 13] Solution for the transdermal administration (drip) Compound No.1-001 2 parts Light Liquid Paraffin 58 parts Olive Oil 30 parts ODO -H 9 parts Shin-Etsu Silicone 1 part In addition, when the compound of the present invention is used as an agrochemical, other types of herbicides, various insecticides, acaricides, nematicides, You may mix and apply with a disinfectant, a plant growth regulator, a synergist, a fertilizer, a soil conditioner, etc.
特に他の農薬あるいは植物ホルモンと混合施用することにより、施用薬量の低減による低コスト化、混合薬剤の相乗作用による殺虫スペクトラムの拡大やより高い有害生物防除効果が期待できる。この際、同時に複数の公知農薬との組み合わせも可能である。本発明化合物と混合使用する農薬の種類としては、例えばザ・ペスティサイド・マニュアル(The Pesticide Manual)15版、2009年に記載されている化合物等が挙げられる。具体的にその一般名を例示すれば次の通りであるが、必ずしもこれらのみに限定されるものではない。 In particular, when mixed with other pesticides or plant hormones, the cost can be reduced by reducing the amount of applied medicine, the insecticidal spectrum can be expanded by the synergistic action of the mixed drugs, and higher pest control effects can be expected. At this time, a combination with a plurality of known agricultural chemicals is also possible. Examples of the type of agricultural chemical used in combination with the compound of the present invention include compounds described in The Pesticide Manual 15th edition, 2009, and the like. Specific examples of common names are as follows, but the general names are not necessarily limited to these.
殺菌剤:アシベンゾラルーS−メチル(acibenzolar-S-methyl)、アシルアミノベンザミド(acylaminobenzamide)、アシペタックス(acypetacs)、アルジモルフ(aldimorph) 、アメトクトラジン(ametoctradin)、アミスルブロム(amisulbrom)、アンバム(amobam)、アムプロピルホス(ampropyfos)、アニラジン(anilazine)、アザコナゾール(azaconazole)、アジチラム(azithiram)、アゾキシストロビン(azoxystrobin)、バリウムポリサルファイド(barium polysulfide)、ベナラキシル(benalaxyl)、ベナラキシル−M(benalaxyl-M)、ベノダニル(benodanil)、ベノミル(benomyl)、ベンキノックス(benquinox)、ベンタルロン(bentaluron)、ベンチアバリカルブ(benthiavalicarb)、ベンチアゾール(benthiazole)、ベンザマクリル(benzamacril)、ベンズアモルフ(benzamorf)、ベトキサジン(bethoxazine)、ビナパクリル(binapacryl)、ビフェニル(biphenyl)、ビテルタノール(bitertanol)、ブラストサイジン−S(blasticidin-S)、ビキサフェン(bixafen)、ボルドー液(bordeaux mixture)、ボスカリド(boscalid)、ブロモコナゾール(bromoconazole)、ブピリメート(bupirimate)、ブチオベート(buthiobate)、石灰硫黄合剤(calcium polysulfide)、カルシウムポリスルフィド(calcium polysulfide)、キャプタフォール(captafol)、キャプタン(captan)、カルプロパミド(carpropamid)、カルバモルフ(carbamorph)、カルベンダジン(carbendazim)、カルボキシン(carboxin)、カルボン(carvone)、チェシュントミクスチャ(cheshunt mixture)、キノメチオネート(chinomethionat)、クロベンチアゾン(chlobenthiazone)、クロラニフォルメタン(chloraniformethane)、クロラニル(chloranil)、クロルフェナゾール(chlorfenazol)、クロロネブ(chloroneb)、クロロピクリン(chloropicrin)、クロロタロニル(chlorothalonil)、クロロキノックス(chlorquinox)、クロゾリネート(chlozolinate)、クリムバゾール(climbazole)、クロトリマゾール(clotrimazole)、カッパーアセテイト(copper acetate)、塩基性炭酸銅(copper carbonate, basic)、水酸化第二銅(copper hydroxide)、カッパーナフタレン(copper naphthenate)、カッパーオルアイト(copper oleate)、カッパーオキシクロリド(copper oxychloride)、硫酸銅(copper sulfate)、塩基性硫酸銅(copper sulfate, basic)、カッパージンククロメイト(copper zinc chromate)、クフラネブ(cufraneb)、クプロバム(cuprobam)、シアゾファミド(cyazofamid)、シクラフルアミド(cyclafuramid)、シクロヘキシミド(cycloheximide)、シフルフェナミド(cyflufenamid)、シモキサニル(cymoxanil)、サイペンダゾール(cypendazole)、シプロコナゾール(cyproconazol)、シプロジニル(cyprodinil)、シプロフラム(cyprofuram)、ダゾメット(dazomet)、デバカルブ(debacarb)、デカフェンチン(decafentin)、デハイドロアセテイト(dehydroacetic acid)、ジクロフルアニド(dichlofluanid)、ジクロン(dichlone)、ジクロロフェン(dichlorophen)、ジクロゾリン(dichlozoline)、ジクロブトラゾール(diclobutrazol)、ジクロシメット(diclocymet)、ジクロメジン(diclomedine)、ジクロラン(dicloran)など。 Bactericides: acibenzolar-S-methyl, acylaminobenzamide, acypetacs, aldimorph, ametoctradin, amisulbrom, amobam, ampropyl Phos (ampropyfos), anilazine, azaconazole, azithiram, azoxystrobin, barium polysulfide, benalaxyl, benalaxyl-M, benodaril (Benodanil), benomyl, benquinox, bentaluron, benthiavalicarb, benthiazole, benzamacril, benzamorf, bethoxazine, Binapacryl Biphenyl, bitertanol, blasticidin-S, bixafen, bordeaux mixture, boscalid, bromoconazole, bupirimate, buthiobate (Buthiobate), calcium polysulfide, calcium polysulfide, captafol, captan, carpropamid, carbamorph, carbendazim, carboxin (Carboxin), carvone, cheshunt mixture, chinomethionat, clobenthiazone, chloraniformethane, chloranil, chlorfenazol, Chloroneb (c hloroneb), chloropicrin, chlorothalonil, chlorquinox, chlozolinate, climbazole, clotrimazole, copper acetate, basic copper carbonate (copper carbonate, basic), cupric hydroxide, copper naphthenate, copper oleate, copper oxychloride, copper sulfate, basic sulfuric acid Copper sulfate, basic, copper zinc chromate, cufraneb, cuprobam, cyazofamid, cyclafuramid, cycloheximide, cyflufenamid, Simoxanil, cypendazole, cyproconazole (cyp) roconazol), cyprodinil, cyprofuram, dazomet, debacarb, decaentin, dehydroacetic acid, dichlorfluanid, dichlone, Dichlorophen, dichlozoline, diclobutrazol, diclocymet, diclomedine, dicloran, etc.
殺菌剤(続き):ジエトフェンカルブ(diethofencarb)、ジフェノコナゾール(difenoconazole)、ジフルメトリン(diflumetorim)、ジメチリモール(dimethirimol)、ジメトモルフ(dimethomorph)、ジモキシストロビン(dimoxystrobin)、ジニコナゾール(diniconazole)、ジニコナゾール−M(diniconazole-M)、ジノブトン(dinobuton)、ジノカップ(dinocap)、ジノカップ−4(dinocap-4)、ジノカップ−6(dinocap-6)、ジノクトン(dinocton)、ジノスルフォン(dinosulfon)、ジノテルボン(dinoterbon)、ジフェニルアミン(diphenylamine)、ジピリチオン(dipyrithione)、ジタリムホス(ditalimfos)、ジチアノン(dithianon)、ドデモルフ(dodemorph)、ドジン(dodine)、ドラゾクソロン(drazoxolon)、エデフェノホス(edifenphos)、エポキシコナゾール(epoxiconazole)、エタコナゾール(etaconazole)、エタボキサム(ethaboxam)、エテム(etem)、エチリモル(ethirimol)、エトキシキン(ethoxyquin)、エトリジアノール(etridiazole)、ファモキサゾン(famoxadone)、フェナリモル(fenarimol)、フェブコナゾール(febuconazole)、フェナミドン(fenamidone)、フェナミノスルフ(fenaminosulf)、フェナパニル(fenapanil)、フェンダゾスラム(fendazosulam)、フェンフラム(fenfuram)、フェンヘキサミド(fenhexamid)、フェニトロパン(fenitropan)、フェノキサニル(fenoxanil)、フェンピクロニル(fenpiclonil)、フェンプロピジン(fenpropidin)、フェンピラザミン(fenpyrazamine)、フェンプロピモルフ(fenpropimorph)、フェンチン(fentin)、フェルバン(ferbam)、フェリムゾン(ferimzone)、フルアジナム(fluazinam)、フルジオキソニル(fludioxonil)、フルメトベル(flumetover)、フルモルフ(flumorph)、フルオピコリド(fluopicolide)、フルオピラム(fluopyram)、フルオロイミド(fluoroimide)、フルオトリマゾール(fluotrimazole)、フルオキサストロビン(fluoxastrobin)、フルキンコナゾール(fluquinconazole)、フルシラゾール(flusilazole)、フルスルファミド(flusulfamide)、フルチアニル(flutianil)、フルトラニル(flutolanil)、フルトリアフォール(flutriafol)、フルキサピロキサド(fluxapyroxad)、フォルペット(folpet)、フォセチル−アルミニウム(fosetyl-aluminium)、フベリダゾール(fuberidazole)、フララキシル(furalaxyl)、フラメトピル(furametpyr)、フルカルバニル(furcarbanil)、フルコナゾール(furconazole)、フルコナゾール−シス(furconazole-cis)、フルメシクロックス(furmecyclox)、フルファネート(furphanate)、グリオジン(glyodin)、グリセオフルビン(griseofulvin)、グアザチン(guazatine)、ハラクリネイト(halacrinate)、ヘキサクロロベンゼン(hexachlorobenzene)、ヘキサコナゾール(hexaconazole)、ヘキシルチオフォス(hexylthiofos)、ハイドロキシキノリン サルフェイト(8-hydroxyquinoline sulfate)、ヒメキサゾール(hymexazol)、イマザリル(imazalil)、イミベンコナゾール(imibenconazole)、イミノクタジン(iminoctadine)、イプコナゾール(ipconazole)、イプロベンホス(iprobenfos)、イプロジオン(iprodione)、イプロバリカルブ(iprovalicarb)、イソプロチオラン(isoprothiolane)、イソバレジオン(isovaledione)など。 Bactericides (continued): diethofencarb, difenoconazole, diflumetorim, dimethirimol, dimethomorph, dimoxystrobin, diniconazole-M, diniconazole-M, diniconazole-M M), dinobuton, dinocap, dinocap-4, dinocap-6, dinoton, dinosulfon, dinoterbon, diphenylamine ), Dipyrithione, ditalimfos, dithianon, dodemorph, dodine, drazoxolon, edifenphos, epoxiconazole, etaconazole, etaconazole Xham (ethaboxam), etem, etirimol, ethoxyquin, etridianol, famoxadone, fenarimol, febuconazole, fenamidone, phenaminosulf ), Fenapanil, fendazosulam, fenfuram, fenhexamid, fenitropan, fenoxanil, fenpiclonil, fenpropidin, fenpyrazamine (fenpyrazamine), fenpropimorph, fentin, ferbam, ferimzone, fluazinam, fludioxonil, flumetover, flumorph, full Fluopicolide, fluopyram, fluoroimide, fluotrimazole, fluoxastrobin, fluquinconazole, flusilazole, flusulfamide, fluthianyl (fluoxanil) flutianil), flutolanil, flutriafol, fluxapyroxad, folpet, fosetyl-aluminium, fuberidazole, fluralaxyl, flametopyr ( furametpyr), furcarbanil, furconazole, fluconazole-cis, furmecyclox, furphanate, furyonate, glyodin, griseofulvin, guazachi (Guazatine), halacrinate, hexachlorobenzene, hexaconazole, hexylthiofos, hydroxyquinoline sulfate, hymexazol, imazalil, Imibenconazole, iminoctadine, ipconazole, iprobenfos, iprodione, iprovalicarb, isoprothiolane, isovaledione, etc.
殺菌剤(続き):カスガマイシン(kasugamycin)、クレソキシム−メチル(kresoxim-methyl)、マンカッパー(mancopper)、マンコゼブ(mancozeb)、マンジプロパミド(mandipropamid)、マンネブ(maneb)、メベニル(mebenil)、メカルビンジド(mecarbinzid)、メパニピリム(mepanipyrim)、メプロニル(mepronil)、メタラキシル(metalaxyl)、メタラキシル−M(metalaxyl-M)、メタム(metam)、メタゾキソロン(metazoxolon)、メトコナゾール(metconazole)、メタスルホカルブ(methasulfocarb)、メトフロキサム(methfuroxam)、メチルイソチオシアネイト(methyl isothiocyanate)、メチラム(metiram)、メトミノストロビン(metominostrobin)、メトラフェノン(metrafenone)、メトスルフォバックス(metsulfovax)、ミルネブ(milneb)、ミクロブタニル(myclobutanil)、ミクロゾリン(myclozolin)、ナバム(nabam)、ナタマイシン(natamycin)、ニッケルビス(ジメチルジチオカーバメート)(nickel bis(dimethyldithiocarbamate))、ニトロスチレン(nitrostyrene)、ニトロタール−イソプロピル(nitrothal-isopropyl)、ヌアリモル(nuarimol)、オーシーエイチ(OCH)、オクチリノン(octhilinone)、オフレース(ofurace)、オリサストロビン(orysastrobin)、オキサジキシル(oxadixyl)、有機銅(oxine copper)、オキシカルボキシン(oxycarboxin)、オキスポコナゾールフマール酸塩(oxpoconazole fumarate)、ペフラゾエート(pefurzoate)、ペンコナゾール(penconazole)、ペンフルフェン(penflufen)、ペンシクロン(pencycuron)、ペンチオピラド(penthiopyrad)、オルソフェニルフェノール(o-phenylphenol)、フォスジフェン(phosdiphen)、フタライド(phthalide)、ピコキシストロビン(picoxystrobin)、ピペラリン(piperalin)、ポリカーバメート(polycarbamate)、ポリオキシン(polyoxins)、ポリオクソリム(polyoxorim)、ポタシウムアザイド(potassium azide)、炭酸水素カリウム(potassium hydrogen carbonate)、プロキナジド(proquinazid)、プロベナゾール(probenazole)、プロクロラズ(prochloraz)、プロシミドン(procymidone)、プロパモカルブ塩酸塩(propamocarb hydrochloride)、プロピコナゾール(propiconazole)、プロピネブ(propineb)、プロチオカルブ(prothiocarb)、プロチオコナゾール(prothioconazole)、ピラカルボリド(pyracarbolid)、ピラクロストロビン(pyraclostrobin)、ピラゾホス(pyrazophos)、ピリジニトリル(pyridinitril)、ピリフェノックス(pyrifenox)、ピリメタニル(pyrimethanil)、ピリオフェノン(pyriofenone)、ピロキュロン(pyroquilon)、ピロキシクロル(pyroxychlor)、ピロキシフル(pyroxyfur)、キノメチオネート(quinomethionate)、キノキシフェン(quinoxyfen)、キントゼン(quintozene)、キナセトール・スルフェート(quinacetol-sulfate)、キナザミド(quinazamid)、キンコナゾール(quinconazole)、ラベンザゾール(rabenzazole)など。 Fungicide (continued): kasugamycin, kresoxim-methyl, mancopper, mancozeb, mandipropamid, maneb, mebenil, mecarbinzid , Mepanipyrim, mepronil, metalaxyl, metalaxyl-M, metam, metazoxolon, metconazole, metasulfocarb, metoxasulfocarb, metoxafloxam ), Methyl isothiocyanate, metiram, metinominostrobin, metrafenone, metsulfovax, milneb, microbutanil, microzoline (myclozo) lin), nabam, natamycin, nickel bis (dimethyldithiocarbamate), nitrostyrene, nitrothal-isopropyl, nuarimol, OH (OCH), octhilinone, offurace, orysastrobin, oxadixyl, oxine copper, oxycarboxin, oxpoconazole fumarate , Pefurzoate, penconazole, penflufen, penencycuron, penthiopyrad, o-phenylphenol, phosdiphen, phthalide, picoxis Robin (picoxystrobin), piperalin (piperalin), polycarbamate (polycarbamate), polyoxins (polyoxins), polyoxorim (polyoxorim), potassium azide (potassium hydrogen carbonate) (potassium hydrogen carbonate), proquinazid (proquinazid) probenazole), prochloraz, procymidone, propamocarb hydrochloride, propiconazole, propineb, prothiocarb, prothioconazole, pyracarbolid, Pyraclostrobin, pyrazophos, pyridinitril, pyrifenox, pyrimethanil, pyriofenone, pyroculone (pyroq) uilon, pyroxychlor, pyroxyfur, quinomethionate, quinoxyfen, quintozene, quinacetol-sulfate, quinazamid, quinazaazole, quinconazole rabenzazole).
殺菌剤(続き):アジ化ナトリウム(sodium azide)、炭酸水素ナトリウム(sodium hydrogen carbonate)、次亜塩素酸ナトリウム(sodium hypochlorite)、硫黄(sulfur)、スピロキサミン(spiroxamine)、サリチルアニリド(salycylanilide)、シルチオファム(silthiofam)、シメコナゾール(simeconazole)、テブコナゾール(tebuconazole)、テクナゼン(tecnazene)、テコラム(tecoram)、テトラコナゾール(tetraconazole)、チアベンダゾール(thiabendazole)、チアジフルオール(thiadifluor)、チシオフェン(thicyofen)、チフルザミド(thifluzamide)、チオクロルフェンフィム(thiochlorfenphim)、チオファネート(thiophanate)、チオファネート−メチル(thiophanate-methyl)、チオキノックス(thioquinox)、チラム(thiram)、チアジニル(tiadinil)、チオキシミド(tioxymid)、トルクロホス−メチル(tolclofos-methyl)、トリルフラニド(tolylfluanid)、トリアジメホン(triadimefon)、トリアジメノール(toriadimenol)、トリアミフォス(triamiphos)、トリアリモル(triarimol)、トリアゾキシド(triazoxide)、トリアズブチル(triazbutil)、トリブチルチンオキサイド(tributyltin oxide)、トリクラミド(trichlamide)、トリシクラゾール(tricyclazole)、トリデモルフ(tridemorph)、トリフロキシストロビン(trifloxystrobin)、トリフルミゾール(triflumizole)、トリホリン(triforine)、トリチコナゾール(triticonazole)、バリダマイシン(validamycin)、バリフェナレート(valifenalate)、ビンクロゾリン(vinclozolin)、ザリルアミド(zarilamide)、硫酸亜鉛(zinc sulfate)、ジネブ(zineb)、ジラム(ziram)、ゾキサミド(zoxamide)及びシイタケ菌糸体抽出物など。 Fungicide (continued): sodium azide, sodium hydrogen carbonate, sodium hypochlorite, sulfur, spiroxamine, salicylanilide, silthiofam (Silthiofam), simeconazole, tebuconazole, tecnazene, tecoram, tetraconazole, thiabendazole, thiadifluor, thicyofen, thifluzamide thifluzamide, thiochlorfenphim, thiophanate, thiophanate-methyl, thioquinox, thiram, thiadinyl, tioxymid, tolcrophos-me Tolclofos-methyl, tolylfluanid, triadimefon, triadimenol, triamiphos, triarimol, triazoxide, triazbutil, tributyltin oxide ), Trichlamide, tricyclazole, tridemorph, trifloxystrobin, triflumizole, triforine, triticonazole, validamycin, validamycin Examples include valifenalate, vinclozolin, zarilamide, zinc sulfate, zineb, ziram, zoxamide and shiitake mycelium extract.
殺バクテリア剤:ベンザルコニウムクロライド(benzalkonium chloride)、ビチオノール(bithionol)、ブロノポール(bronopol)、クレゾール(cresol)、ホルムアルデヒド(formaldehyde)、ニトラピリン(nitrapyrin)、オキソリニックアシド(oxolinic acid)、オキシテトラサイクリン(oxyterracycline)、ストレプトマイシン(streptomycin)及びテクロフタラム(tecloftalam)など。 Bactericides: benzalkonium chloride, bithionol, bronopol, cresol, formaldehyde, nitrapyrin, oxolinic acid, oxyterracycline , Streptomycin and tecloftalam.
殺線虫剤:アルドキシカルブ(aldoxycarb)、カズサホス(cadusafos)、デービーシーピー(DBCP)、ジクロフェンチオン(dichlofenthion)、デーエスピー(DSP)、エトプロホス(ethoprophos)、フェナミホス(fenamiphos)、フェンスルホチオン(fensulfothion)、フルエンスルホン(fluensulfone)、フォスチアゼート(fosthiazate)、フォスチエタン(fosthietan)、イミシアホス(imicyafos)、イサミドホス(isamidofos)、イサゾホス(isazofos)、オキサミル(oxamyl)及びチオナジン(thionazin)など。 Nematicides: aldoxycarb, cadusafos, DCP, DBCH, dichlofenthion, DSP (DSP), etoprophos, fenamiphos, fensulfothion, fluene Sulfone (fluensulfone), fosthiazate (fosthiazate), fosthietan (fosthietan), imisiafos (imicyafos), isamidofos (isamidofos), isazofos (isazofos), oxamyl (oxamyl) and thionazin (thionazin) and the like.
殺ダニ剤:アセキノシル(acequinocyl)、アクリナトリン(acrinathrin)、アミトラズ(amitraz)、BCI−033(試験名)、ビフェナゼート(bifenazate)、ブロモプロピレート(bromopropylate)、チノメチオネート(chinomethionat)、クロロベンジラート(chlorobezilate)、クロフェンテジン(clofentezine)、シエノピラフェン(cyenopyrafen)、シフルメトフェン(cyflumetofen)、サイヘキサチン(cyhexatine)、ジコフォール(dicofol)、ジエノクロール(dienochlor)、デーエヌオーシー(DNOC)、エトキサゾール(etoxazole)、フェナザキン(fenazaquin)、フェンブタチンオキシド(fenbutatin oxide)、フェノチオカルブ(fenothiocarb)、フェンプロパトリン(fenpropathrin)、フェンピロキシメート(fenpyroximate)、フルアクリピリム(fluacrypyrim)、ハルフェンプロックス(halfenprox)、ヘキシチアゾックス(hexythiazox)、ミルベメクチン(milbemectin)、プロパルギット(propargite)、ピリダベン(pyridaben)、ピリミジフェン(pyrimidifen)、S−1870(試験名)、スピロジクロフェン(spirodiclofen)、スピロメシフェン(spyromesifen)、NNI−0711(試験名)、CL900167(試験名)及びテブフェンピラド(tebufenpyrad)など。 Acaricide: acequinocyl, acrinathrin, amitraz, BCI-033 (test name), bifenazate, bromopropylate, chinomethionat, chlorobezilate , Clofentezine, cyenopyrafen, cyflumetofen, cyhexatine, dicofol, dienochlor, denochlor (DNOC), etoxazole, quinazaquin (fenaza) Fenbutatin oxide, fenothiocarb, fenpropathrin, fenpyroximate, fluacrypyrim, halfenprox (halfenpro) x), hexythiazox, milbemectin, propargite, pyridaben, pyrimidifen, S-1870 (test name), spirodiclofen, spiromesifen ( spyromesifen), NNI-0711 (test name), CL900187 (test name) and tebufenpyrad.
殺虫剤:アバメクチン(abamectin)、アセフェート(acephate)、アセタミピリド(acetamipirid)、アラニカルブ(alanycarb)、アルディカルブ(aldicarb)、アレスリン(allethrin)、アザメチホス(azamethiphos)、アジンホス−メチル(azinphos-methyl)、バチルスチューリンゲシス(bacillus thuringiensis)、ベンジオカルブ(bendiocarb)、ベンフルトリン(benfluthrin)、ベンフラカルブ(benfuracarb)、ベンスルタップ(bensultap)、ビフェントリン(bifenthrin)、ビオアレスリン(bioallethrin)、ビオレスメトリン(bioresmethrin)、ビストリフルロン(bistrifluron)、ブプロフェジン(buprofezin)、ブトカルボキシン(butocarboxim)、カルバリル(carbaryl)、カルボフラン(carbofuran)、カルボスルファン(carbosulfan)、カルタップ(cartap)、クロルアントラニリプロール(chlorantraniliprole)、クロルエトキシホス(chlorethxyfos)、クロルフェナピル(chlorfenapyr)、クロルフェンビンホス(chlorfenvinphos)、クロルフルアズロン(chlorfluazuron)、クロルメホス(chlormephos)、クロルピリホス(chlorpyrifos)、クロピリホス−メチル(chlorpyrifos-methyl)、クロマフェノジド(chromafenozide)、クロチアニジン(clothianidin)、シアントラニリプロール(cyantraniliprole)、シクロプロトリン(cycloprothrin)、シフルメトフェン(cyflumetofen)、シフルトリン(cyfluthrin)、ベータ−シフルトリン(beta-cyfluthrin)、シハロトリン(cyhalothrin)、ラムダ−シハロトリン(lambda-cyhalothrin)、シペルメトリン(cypermethrin)、アルファ−シペルメトリン(alpha-cypermethrin)、ベータ−シペルメトリン(beta-cypermethrin)、ゼタ−シペルメトリン(zeta-cypermethrin)、シロマジン(cyromazine)、デルタメトリン(deltamethrin)、ジアクロデン(diacloden)、ジアフェンチウロン(diafenthiuron)、ダイアジノン(diazinon)、ジクロルボス(dichlorvos)、ジフルベンズロン(diflubenzuron)、ジメチルビンホス(dimethylvinphos)、ジノテフラン(dinotefuran)、ジオフェノラン(diofenolan)、ジスルフォトン(disulfoton)、ジメトエート(dimethoate)、エマメクチンベンゾエート(emamectin-benzoate)、エンペントリン(empenthrin)、エンドスルファン(endosulfan)、アルファ−エンドスルファン(alpha-endosulfan)、イーピーエヌ(EPN)、エスフェンバレレート(esfenvalerate)、エチオフェンカルブ(ethiofencarb)、エチプロール(ethiprole)、エトフェンプロックス(etofenprox)、エトリムホス(etrimfos)、フェニトロチオン(fenitrothion)、フェノブカルブ(fenobucarb)、フェノキシカーブ(fenoxycarb)、フェンプロパトリン(fenpropathrin)、フェンチオン(fenthion)、フェンバレレート(fenvalerate)、フィプロニル(fipronil)、フロニカミド(flonicamid)、フルベンジアミド(flubendiamide)、フルシトリネート(flucythrinate)、フルフェネリム(flufenerim)、フルフェノクスウロン(flufenoxuron)、フルフェンプロックス(flufenprox)、フルメトリン(flumethrin)、フルバリネート(fluvalinate)、タウ−フルバリネート(tau-fluvalinate)、ホノホス(fonophos)、フォルメタネート(formetanate)、フォルモチオン(formothion)、フラチオカルブ(furathiocarb)、フルフィプロール(flufiprole)、フルピラジフロン(flupyradifurone)、フロメトキン(flometoquin)など。 Insecticides: abamectin, acephate, acetamipirid, alanamicarb, aldicarb, allethrin, azamethiphos, azinphos-methyl, bacillus tubulin Bacillus thuringiensis, bendiocarb, benfluthrin, benfuracarb, bensultap, bifenthrin, bioallethrin, bioresmethrin, bistrifluron, tris Buprofezin, butocarboxim, carbaryl, carbofuran, carbosulfan, cartap, chlorantraniliprole, Chlorethxyfos, chlorfenapyr, chlorfenvinphos, chlorfluazuron, chlormephos, chlorpyrifos, chlorpyrifos-methyl, chromafenozide, chromafenozide Clothianidin, cyantraniliprole, cycloprothrin, cyflumetofen, cyfluthrin, beta-cyfluthrin, cyhalothrin, lambda-cyhalothrin cyhalothrin), cypermethrin, alpha-cypermethrin, beta-cypermethrin, zeta-cypermethrin, cyromazine, Deltamethrin, diacloden, diafenthiuron, diazinon, dichlorvos, diflubenzuron, dimethylvinphos, dinotefuran, diofenolan, diofenolan Disulfoton, dimethoate, emamectin-benzoate, empenthrin, endosulfan, alpha-endosulfan, EP-N, EPN, esfenvalerate, etiophencarb (Ethiofencarb), ethiprole, etofenprox, etrimfos, fenitrothion, fenobucarb, fenobucarb Fenoxycarb, fenpropathrin, fenthion, fenvalerate, fipronil, flonicamid, flubendiamide, flucythrinate, flufenerim , Flufenoxuron, flufenprox, flumethrin, fluvalinate, tau-fluvalinate, fonophos, formetanate, formotaion ( formothion), furathiocarb, flufiprole, flupyradifurone, flometoquin and the like.
殺虫剤(続き):ハロフェノジド(halofenozide)、ヘキサフルムロン(hexaflumuron)、ヒドラメチルノン(hydramethylnon)、イミダクロプリド(imidacloprid)、イソフェンホス(isofenphos)、インドキサカルブ(indoxacarb)、イソプロカルブ(isoprocarb)、イソキサチオン(isoxathion)、レピメクチン(lepimectin)、ルフェヌウロン(lufenuron)、マラチオン(malathion)、メペルフルスリン(meperfluthrin)、メタフルミゾン(metaflumizone)、メタルデヒド(metaldehyde)、メタミドホス(methamidophos)、メチダチオン(methidathion)、メタクリホス(methacrifos)、メタフルミゾン(metaflumizone)、メタルカルブ(metalcarb)、メソミル(methomyl)、メソプレン(methoprene)、メトキシクロール(methoxychlor)、メトキシフェノジド(methoxyfenozide)、メチルブロマイド(methyl bromide)、モノクロトホス(monocrotophos)、ムスカルーレ(muscalure)、ニテンピラム(nitenpyram)、ノバルロン(novaluron)、ノビフルムロン(noviflumuron)、オメトエート(omethoate)、オキサミル(oxamyl)、オキシデメトン−メチル(oxydemeton-methyl)、オキシデプロホス(oxydeprofos)、パラチオン(parathion)、パラチオン−メチル(parathion-methyl)、ペンタクロロフェノール(pentachlorophenol(PCP))、ペルメトリン(permethrin)、フェノトリン(phenothrin)、フェントエート(phenthoate)、フォキシム(phoxim)、ホレート(phorate)、ホサロン(phosalone)、ホスメット(phosmet)、ホスファミドン(phosphamidon)、ピリミカルブ(pirimicarb)、ピリミホス−メチル(pirimiphos-methyl)、プロフェノホス(profenofos)、プロチオホス(prothiofos)、プロパホス(propaphos)、プロトリフェンブト(protrifenbute)、ピメトロジン(pymetrozine)、ピラクロホス(pyraclofos)、ピレトリン(pyrethrins)、ピリダリル(pyridalyl)、ピリフルキナゾン(pyrifluquinazon)、ピリプロール(pyriprole)、ピラフルプロール(pyrafluprole)、、ピリプロキシフェン(pyriproxyfen)、レスメトリン(resmethrin)、ロテノン(rotenone)、SI−0405(試験名)、スルプロホス(sulprofos)、シラフルオフェン(silafluofen)、スピネトラム(spinetoram)、スピノサド(spinosad)、スピロテトラマート(spirotetramat)、スルホキサフロール(sulfoxaflor)、スルホテップ(sulfotep)、SYJ−159(試験名)、テブフェノジド(tebfenozide)、テフルベンズロン(teflubenzuron)、テフルトリン(tefluthorin)、テルブホス(terbufos)、テトラクロロビンホス(tetrachlorvinphos)、テトラメトリン(tetramethrin)、d−T−80−フタルスリン(d-tetramethrin)、テトラメチルフルスリン(tetramethylfluthrin)、チアクロプリド(thiacloprid)、チオシクラム(thiocyclam)、チオジカルブ(thiodicarb)、チアメトキサム(thiamethoxam)、チオファノックス(thiofanox)、チオメトン(thiometon)、トルフェンピラド(tolfenpyrad)、トラロメスリン(tralomethrin)、トリクロルホン(trichlorfon)、トリアズロン(triazuron)、トリフルムロン(triflumuron)、バミドチオン(vamidothion)及びME−5343(試験名)など。 Insecticides (continued): halofenozide, hexaflumuron, hydramethylnon, imidacloprid, isofenphos, indoxacarb, isoprocarb, isoxathion ), Lepimectin, lufenuron, malathion, meperfluthrin, metaflumizone, metalaldehyde, methamidophos, methidathion, methidathion, methacrifos (methacrifos) ), Metalcarb, methomyl, metoprene, methoxychlor, methoxyfenozide, methyl bromide , Monocrotophos, muscalure, nitenpyram, novaluron, noviflumuron, omethoate, oxamyl, oxydemeton-methyl, oxydemeton-methyl (oxydemeton-methyl) oxydeprofos, parathion, parathion-methyl, pentachlorophenol (PCP), permethrin, phenothrin, phenthoate, phoxim, phorate ), Phosalone, phosmet, phosphamidon, pirimicarb, pirimiphos-methyl, profenofos, prothiofos, propaphos, prototri Protrifenbute, pyrometrozine, pyraclofos, pyrethrins, pyridalalyl, pyrifluquinazon, pyriprole, pyrafluprole, proxy, pyrifiprofen, py Resmethrin, rotenone, SI-0405 (study name), sulprofos, silafluofen, spinetram, spinosad, spirotetramat, sulfoxaflor ), Sulfotep, SYJ-159 (test name), tebfenozide, teflubenzuron, tefluthorin, terbufos, tetrachlorvinphos, tetrame Trimethrin, dT-80-phthalthrin, d-tetramethrin, tetramethylfluthrin, thiacloprid, thiocyclam, thiodicarb, thiamethoxam, thiophanox ( thiofanox, thiometon, tolfenpyrad, tralomethrin, trichlorfon, triazuron, triflumuron, vamidomion and ME-5343 (test name).
以下に本発明化合物の合成例、試験例を実施例として具体的に述べることで、本発明をさらに詳しく説明するが、本発明はこれらによって限定されるものではない。 Hereinafter, the present invention will be described in more detail by specifically describing synthesis examples and test examples of the compounds of the present invention as examples, but the present invention is not limited thereto.
合成例に記載した中圧分取液体クロマトグラフィーは、山善株式会社中圧分取装置;YFLC−Wprep(流速18ml/min、シリカゲル40μmのカラム)を使用した。 The medium pressure preparative liquid chromatography described in the synthesis example used an intermediate pressure preparative apparatus (Yamazen Co., Ltd.);
[合成例]
合成例1
N−{3−クロロ−1−(ピリジン−3−イル)−1H−ピラゾール−4−イル}−N−(メトキシメチル)−2−(メチルチオ)プロパンアミドの製造(化合物番号1−001)
工程1
N−{3−クロロ−1−(ピリジン−3−イル)−1H−ピラゾール−4−イル}−2−(メチルチオ)プロパンアミドの製造
2−(メチルチオ)プロパン酸0.93gのジクロロメタン5ml溶液に、オキサリルクロリド1.0g、次いでN,N−ジメチルホルムアミド10mgの順に添加し、室温にて1時間撹拌した。攪拌終了後、該反応溶液の溶媒を減圧下留去し、得られた残渣にジクロロメタン1.5mlを添加した。添加終了後、該反応溶液を、別途調整した3−クロロ−1−(ピリジン−3−イル)−1H−ピラゾール−4−アミン1.0g及びピリジン0.73gのジクロロメタン5ml溶液に滴下し、室温にて40分撹拌した。反応終了後、該反応混合物に水5mlを添加し、ジクロロメタン(5mlx2)にて抽出した。得られた有機層を、飽和食塩水、次いで無水硫酸ナトリウムの順で洗浄・乾燥し、減圧下にて溶媒を留去した。得られた固体をジイソプロピルエーテルで洗浄し、目的物1.33gを茶色固体として得た。
融点;125−127℃
工程2
N−{3−クロロ−1−(ピリジン−3−イル)−1H−ピラゾール−4−イル}−N−(メトキシメチル)−2−(メチルチオ)プロパンアミドの製造
N−{3−クロロ−1−(ピリジン−3−イル)−1H−ピラゾール−4−イル}−2−(メチルチオ)プロパンアミド416mgのテトラヒドロフラン溶液5mlに、0℃にて60重量%水素化ナトリウム(鉱油中に分散)80mgを添加し10分間撹拌した。0℃を保ちながら、該反応混合物にクロロメチルメチルエーテル169mgを添加した。添加終了後、室温にて1時間撹拌した。反応終了後、該反応溶液を氷水に添加し、酢酸エチル(10mlx3)にて抽出した。得られた有機層を、飽和食塩水、次いで無水硫酸ナトリウムの順で洗浄・乾燥し、減圧下にて溶媒を留去した。得られた残留物をn−ヘキサン−酢酸エチル[9:1〜1:3(体積比、以下同じである。)のグラジエント]にて溶出する中圧分取液体クロマトグラフィーにて精製し、目的物114mgを薄黄色固体として得た。
融点;88−89℃
[参考例]
参考例1
3−クロロ−1−(ピリジン−3−イル)−1H−ピラゾール−4−アミンの製造(その1)
3−クロロ−1H−ピラゾール−4−アミン10.7gのトルエン70mlの溶液に、3−ブロモピリジン12.7g、ヨウ化銅(1価)2.65g、炭酸カリウム28.9g及びtrans−N,N’−ジメチルシクロヘキサン−1,2−ジアミン3.96g及びジメチルスルホキシド20mlを順次添加した。添加終了後、反応容器内を窒素ガスで置換した後、100℃にて2時間撹拌した。反応終了後、該反応混合物中に析出した固体をろ別した。得られたろ液に酢酸エチル100mlを添加し、7%アンモニア水溶液50ml、次いで飽和食塩水で洗浄した後、無水硫酸ナトリウムで脱水・乾燥した。減圧下にて溶媒を留去した後、得られた固体をジイソプロピルエーテルで洗浄し目的物8.52gを茶褐色固体として得た。
融点;139−143℃
参考例2
3−クロロ−1−(ピリジン−3−イル)−1H−ピラゾール−4−アミンの製造(その2)
工程1
エチル 3−クロロ−1H−ピラゾール−4−カルボキシレートの製造
エチル 1−tert−ブチル−5−クロロ−1H−ピラゾール−4−カルボキシレート9.71gに、氷冷下にて濃塩酸30mlを添加し、室温にて一晩撹拌した。攪拌終了後、該反応混合物に濃塩酸10mlを添加し、一昼夜撹拌を継続した。反応終了後、該反応混合物を0℃に冷却し、水酸化ナトリウム水溶液で中和した後、酢酸エチル100mlにて抽出した。得られた有機層を無水硫酸ナトリウムで脱水・乾燥後、減圧下にて溶媒を留去した。得られた固体を、n−ヘキサンで洗浄し、目的物6.28gを白色固体として得た。
1H NMR(CDCl3,Me4Si,300MHz)δ11.2(brs,1H),8.10(s,1H),4.33(q,J=7.2Hz,2H),1.36(t,J=7.2Hz,3H)
工程2
エチル 3−クロロ−1−(ピリジン−3−イル)−1H−ピラゾール−4−カルボキシレートの製造
エチル 3−クロロ−1H−ピラゾール−4−カルボキシレート10.2gのN,N−ジメチルホルムアミド150ml溶液に、3−ヨードピリジン15.6g、ヨウ化銅(1価)2.23g及び炭酸セシウム33.0gを順次添加した。添加終了後、反応容器内部を窒素ガスで置換した後、130℃にて5時間撹拌した。反応終了後、該反応混合物を室温まで放冷し、1N水酸化ナトリウム水溶液100mlを添加した。該反応混合物中の不溶物を、減圧下セライトろ過により除去した後、得られたろ液を酢酸エチル100mlにて抽出した。得られた有機層を飽和食塩水次いで無水硫酸ナトリウムの順で洗浄・乾燥し、減圧下にて溶媒を留去した。得られた残留物をn−ヘキサン−酢酸エチル(1:1)にて溶出する中圧分取液体クロマトグラフィーにて精製し、目的物7.56gを白色固体として得た。
融点;90−93℃。
[Synthesis example]
Synthesis example 1
Production of N- {3-chloro-1- (pyridin-3-yl) -1H-pyrazol-4-yl} -N- (methoxymethyl) -2- (methylthio) propanamide (Compound No. 1-001)
Process 1
Preparation of N- {3-chloro-1- (pyridin-3-yl) -1H-pyrazol-4-yl} -2- (methylthio) propanamide To a solution of 0.93 g of 2- (methylthio) propanoic acid in 5 ml of dichloromethane , 1.0 g of oxalyl chloride and then 10 mg of N, N-dimethylformamide were added in this order, and the mixture was stirred at room temperature for 1 hour. After completion of the stirring, the solvent of the reaction solution was distilled off under reduced pressure, and 1.5 ml of dichloromethane was added to the resulting residue. After completion of the addition, the reaction solution was added dropwise to a 5 ml dichloromethane solution of 1.0 g of 3-chloro-1- (pyridin-3-yl) -1H-pyrazol-4-amine and 0.73 g of pyridine prepared separately. For 40 minutes. After completion of the reaction, 5 ml of water was added to the reaction mixture and extracted with dichloromethane (5 ml × 2). The obtained organic layer was washed and dried in the order of saturated brine and then anhydrous sodium sulfate, and the solvent was distilled off under reduced pressure. The obtained solid was washed with diisopropyl ether to obtain 1.33 g of the desired product as a brown solid.
Melting point: 125-127 ° C
Process 2
Preparation of N- {3-chloro-1- (pyridin-3-yl) -1H-pyrazol-4-yl} -N- (methoxymethyl) -2- (methylthio) propanamide N- {3-Chloro-1 -(Pyridin-3-yl) -1H-pyrazol-4-yl} -2- (methylthio) propanamide (416 mg) in tetrahydrofuran (5 ml) at 0 ° C. with 60 wt% sodium hydride (dispersed in mineral oil) (80 mg) Added and stirred for 10 minutes. While maintaining 0 ° C., 169 mg of chloromethyl methyl ether was added to the reaction mixture. After completion of the addition, the mixture was stirred at room temperature for 1 hour. After completion of the reaction, the reaction solution was added to ice water and extracted with ethyl acetate (10 ml × 3). The obtained organic layer was washed and dried in the order of saturated brine and then anhydrous sodium sulfate, and the solvent was distilled off under reduced pressure. The obtained residue was purified by medium pressure preparative liquid chromatography eluting with n-hexane-ethyl acetate [gradient of 9: 1 to 1: 3 (volume ratio, the same shall apply hereinafter)]. 114 mg of product was obtained as a pale yellow solid.
Melting point: 88-89 ° C
[Reference example]
Reference example 1
Production of 3-chloro-1- (pyridin-3-yl) -1H-pyrazol-4-amine (Part 1)
To a solution of 10.7 g of 3-chloro-1H-pyrazol-4-amine in 70 ml of toluene, 12.7 g of 3-bromopyridine, 2.65 g of copper iodide (monovalent), 28.9 g of potassium carbonate, and trans-N, N′-dimethylcyclohexane-1,2-diamine 3.96 g and dimethyl sulfoxide 20 ml were sequentially added. After completion of the addition, the inside of the reaction vessel was replaced with nitrogen gas, followed by stirring at 100 ° C. for 2 hours. After completion of the reaction, the solid precipitated in the reaction mixture was filtered off. To the obtained filtrate, 100 ml of ethyl acetate was added, washed with 50 ml of 7% aqueous ammonia solution and then with saturated saline, and then dehydrated and dried over anhydrous sodium sulfate. After evaporating the solvent under reduced pressure, the obtained solid was washed with diisopropyl ether to obtain 8.52 g of the desired product as a brown solid.
Melting point: 139-143 ° C
Reference example 2
Production of 3-chloro-1- (pyridin-3-yl) -1H-pyrazol-4-amine (Part 2)
Process 1
Preparation of ethyl 3-chloro-1H-pyrazole-4-carboxylate To 9.71 g of ethyl 1-tert-butyl-5-chloro-1H-pyrazole-4-carboxylate was added 30 ml of concentrated hydrochloric acid under ice cooling. And stirred at room temperature overnight. After completion of the stirring, 10 ml of concentrated hydrochloric acid was added to the reaction mixture, and stirring was continued for a whole day and night. After completion of the reaction, the reaction mixture was cooled to 0 ° C., neutralized with an aqueous sodium hydroxide solution, and extracted with 100 ml of ethyl acetate. The obtained organic layer was dehydrated and dried over anhydrous sodium sulfate, and the solvent was distilled off under reduced pressure. The obtained solid was washed with n-hexane to obtain 6.28 g of the desired product as a white solid.
1 H NMR (CDCl 3 , Me 4 Si, 300 MHz) δ 11.2 (brs, 1H), 8.10 (s, 1H), 4.33 (q, J = 7.2 Hz, 2H), 1.36 ( t, J = 7.2 Hz, 3H)
Process 2
Preparation of ethyl 3-chloro-1- (pyridin-3-yl) -1H-pyrazole-4-carboxylate 10.2 g of ethyl 3-chloro-1H-pyrazole-4-carboxylate in 150 ml of N, N-dimethylformamide To this, 15.6 g of 3-iodopyridine, 2.23 g of copper iodide (monovalent) and 33.0 g of cesium carbonate were sequentially added. After completion of the addition, the inside of the reaction vessel was replaced with nitrogen gas, followed by stirring at 130 ° C. for 5 hours. After completion of the reaction, the reaction mixture was allowed to cool to room temperature and 100 ml of 1N aqueous sodium hydroxide solution was added. Insoluble matters in the reaction mixture were removed by Celite filtration under reduced pressure, and the obtained filtrate was extracted with 100 ml of ethyl acetate. The obtained organic layer was washed and dried in the order of saturated brine and then anhydrous sodium sulfate, and the solvent was distilled off under reduced pressure. The obtained residue was purified by medium pressure preparative liquid chromatography eluting with n-hexane-ethyl acetate (1: 1) to obtain 7.56 g of the desired product as a white solid.
Melting point: 90-93 ° C.
工程3
3−クロロ−1−(ピリジン−3−イル)−1H−ピラゾール−4−カルボン酸の製造
エチル 3−クロロ−1−(ピリジン−3−イル)−1H−ピラゾール−4−カルボキシレート16.75gをエタノール130mlに溶解させ、水酸化カリウム5.6g及び水130mlを順次添加し、室温にて一晩撹拌した。反応終了後、2N塩酸水溶液を添加し、該反応混合物のpHを4とした後、析出した固体をろ過にて取り出し、水洗した。取り出した固体をトルエン200mlに添加し、トルエン還流下ディーン・スターク管を用いて脱水した。脱水終了後、トルエン中の固体をろ過にて取り出し、目的物14.5gを薄桃色固体として得た。
融点;275−282℃。
Process 3
Preparation of 3-chloro-1- (pyridin-3-yl) -1H-pyrazole-4-carboxylic acid 16.75 g of ethyl 3-chloro-1- (pyridin-3-yl) -1H-pyrazole-4-carboxylate Was dissolved in 130 ml of ethanol, 5.6 g of potassium hydroxide and 130 ml of water were sequentially added, and the mixture was stirred overnight at room temperature. After completion of the reaction, 2N hydrochloric acid aqueous solution was added to adjust the pH of the reaction mixture to 4, and the precipitated solid was taken out by filtration and washed with water. The taken solid was added to 200 ml of toluene and dehydrated using a Dean-Stark tube under reflux of toluene. After completion of dehydration, the solid in toluene was removed by filtration to obtain 14.5 g of the desired product as a light pink solid.
Melting point: 275-282 ° C.
工程4
3−(3−クロロ−4−ニトロ−1H−ピラゾール−1−イル)ピリジンの製造
濃塩酸9ml及び発煙硝酸3.1ml溶液に、無水酢酸1.72mlを40℃以下となる様に滴下した。滴下終了後、室温にて30分撹拌した後、60℃に加熱した。該反応溶液に、3−クロロ−1−(ピリジン−3−イル)−1H−ピラゾール−4−カルボン酸5gを、5回に分けて60℃を保ちながら添加した。添加終了後、更に65℃にて2時間撹拌を継続した。反応終了後、該反応混合物を氷水に注いだ後、1N水酸化ナトリウム水溶液にて中和した。析出した固体をろ過した後、水洗、乾燥して目的物4.2gを薄黄色固体として得た。
融点;139−140℃
工程5
3−クロロ−1−(ピリジン−3−イル)−1H−ピラゾール−4−アミンの製造
3−(3−クロロ−4−ニトロ−1H−ピラゾール−1−イル)ピリジン4gの酢酸エチル20ml、酢酸10ml及び水10ml溶液を65℃に加熱し、還元鉄2.5gを少しずつ添加した。添加終了後、70℃にて2時間撹拌した。反応終了後、該反応溶液を室温まで放冷し、水50mlを加えた後、炭酸水素ナトリウムにてpH10とした。該反応混合物中の不溶物をろ過にて取り除き、ろ液の有機層を分液にて取り出した。得られた有機層を、飽和食塩水、次いで無水硫酸ナトリウムの順で脱水・乾燥し、減圧下にて溶媒を留去した。得られた固体をジイソプロピルエーテルにて洗浄し、目的物2.6gを薄紫色固体として得た。
融点;142−144℃
参考例3
エチル 3−クロロ−1H−ピラゾール−4−カルボキシレートの製造
濃塩酸2.2ml、酢酸2.2ml及びリン酸1.3mlの溶液に、エチル 3−アミノ−1H−ピラゾール−4−カルボキシレート1gを添加し、−5℃に冷却した。該反応溶液に、亜硝酸ナトリウム0.49gの水1ml溶液を、−5℃を保ちながら滴下し、ジアゾニウム塩溶液を調整した。別途濃塩酸6.4mlを0℃に冷却し、亜硫酸水素ナトリウム0.73gの水1.5ml溶液を0℃を保ちながら滴下した後、硫酸銅5水和物0.16gを添加した。この溶液に、先に調整したジアゾニウム塩溶液と、亜硫酸水素ナトリウム0.73gの水1.5ml溶液を0℃を保ちながら同時に滴下した。滴下終了後、10分間撹拌し、反応溶液を氷水に注いだ後、水酸化カリウム水溶液で中和した。クロロホルム20mlx3にて抽出し、得られた有機層を飽和食塩水、次いで無水硫酸ナトリウムで脱水、乾燥した。減圧下にて溶媒を留去した後、得られた残渣をn−ヘキサン−酢酸エチル(5:1〜1:2のグラジエント)にて溶出する中圧分取液体クロマトグラフィーにて精製し、目的物426mgを白色固体として得た。
1H NMR(CDCl3,Me4Si,300MHz)δ11.2(brs,1H),8.10(s,1H),4.33(q,J=7.2Hz,2H),1.36(t,J=7.2Hz,3H)
参考例4
N−{3−クロロ−1−(ピリジン−3−イル)−1H−ピラゾール−4−イル}−2−(エチルチオ)−N−(メトキシメチル)プロパンアミドの製造(化合物A)
工程1
N−{3−クロロ−1−(ピリジン−3−イル)−1H−ピラゾール−4−イル}−2−(エチルチオ)プロパンアミドの製造
2−(エチルチオ)プロパン酸2.5gのジクロロメタン5ml溶液に、オキサリルクロリド2.1g、次いでN,N−ジメチルホルムアミド10mgの順に添加し、室温にて1時間撹拌した。攪拌終了後、該反応溶液の溶媒を減圧下留去し、得られた残渣にジクロロメタン5mlを添加した。この溶液を、別途調整した3−クロロ−1−(ピリジン−3−イル)−1H−ピラゾール−4−アミン2.5g及びピリジン1.5gのジクロロメタン20ml溶液に滴下し、室温にて40分撹拌した。反応終了後、該反応混合物に水15mlを添加し、クロロホルム(20mlx2)にて抽出した。得られた有機層を、飽和食塩水次いで無水硫酸ナトリウムの順で洗浄・乾燥し、減圧下にて溶媒を留去した。得られた固体をジイソプロピルエーテルで洗浄し、目的物3.66gを白色固体として得た。
融点;104−105℃
工程2
N−{3−クロロ−1−(ピリジン−3−イル)−1H−ピラゾール−4−イル}−2−(エチルチオ)−N−(メトキシメチル)プロパンアミドの製造
N−{3−クロロ−1−(ピリジン−3−イル)−1H−ピラゾール−4−イル}−2−(エチルチオ)プロパンアミド1.17gのテトラヒドロフラン溶液30mlに、0℃にて60重量%水素化ナトリウム(鉱油中に分散)0.23gを添加し、10分間撹拌した。攪拌終了後、該反応混合物に、0℃を保ちながらクロロメチルメチルエーテル0.48gを添加した。添加終了後、室温にて1時間撹拌を継続した。反応終了後、飽和塩化アンモニウム水溶液15mlを添加し、クロロホルム(30mlx3)にて抽出した。得られた有機層を、飽和食塩水次いで無水硫酸ナトリウムの順で洗浄・乾燥し、減圧下にて溶媒を留去した。得られた残留物をn−ヘキサン−酢酸エチル(9:1〜1:1のグラジエント)にて溶出する中圧分取液体クロマトグラフィーにて精製した後、再度クロロホルム:メタノール(99:1〜9:1のグラジエント)にて溶出する中圧分取液体クロマトグラフィーにて精製し、目的物380mgを白色固体として得た。
融点;68−69℃
本発明化合物は、前記製造法及び実施例に準じて製造することができる。合成例1と同様に製造した本発明化合物の例を第1表に示し、それらの物性値を第2表に示すが、本発明はこれらのみに限定されるものではない。
Process 4
Production of 3- (3-chloro-4-nitro-1H-pyrazol-1-yl) pyridine 1.72 ml of acetic anhydride was added dropwise to 9 ml of concentrated hydrochloric acid and 3.1 ml of fuming nitric acid so as to be 40 ° C or lower. After completion of dropping, the mixture was stirred at room temperature for 30 minutes and then heated to 60 ° C. To the reaction solution, 5 g of 3-chloro-1- (pyridin-3-yl) -1H-pyrazole-4-carboxylic acid was added in 5 portions while maintaining 60 ° C. After completion of the addition, stirring was further continued at 65 ° C. for 2 hours. After completion of the reaction, the reaction mixture was poured into ice water and neutralized with 1N aqueous sodium hydroxide solution. The precipitated solid was filtered, washed with water, and dried to obtain 4.2 g of the desired product as a pale yellow solid.
Melting point: 139-140 ° C
Process 5
Preparation of 3-chloro-1- (pyridin-3-yl) -1H-pyrazol-4-amine 3- (3-chloro-4-nitro-1H-pyrazol-1-yl) pyridine 4 g of ethyl acetate 20 ml, acetic acid 10 ml of water and 10 ml of water were heated to 65 ° C., and 2.5 g of reduced iron was added little by little. After completion of the addition, the mixture was stirred at 70 ° C. for 2 hours. After completion of the reaction, the reaction solution was allowed to cool to room temperature, 50 ml of water was added, and the pH was adjusted to 10 with sodium bicarbonate. Insoluble matters in the reaction mixture were removed by filtration, and the organic layer of the filtrate was taken out by liquid separation. The obtained organic layer was dehydrated and dried in the order of saturated brine and then anhydrous sodium sulfate, and the solvent was distilled off under reduced pressure. The obtained solid was washed with diisopropyl ether to obtain 2.6 g of the desired product as a light purple solid.
Melting point: 142-144 ° C
Reference example 3
Preparation of ethyl 3-chloro-1H-pyrazole-4-carboxylate 1 g of ethyl 3-amino-1H-pyrazole-4-carboxylate was added to a solution of concentrated hydrochloric acid 2.2 ml, acetic acid 2.2 ml and phosphoric acid 1.3 ml. Add and cool to -5 ° C. To the reaction solution, a solution of 0.49 g of sodium nitrite in 1 ml of water was added dropwise while maintaining −5 ° C. to prepare a diazonium salt solution. Separately, 6.4 ml of concentrated hydrochloric acid was cooled to 0 ° C., a solution of 0.73 g of sodium bisulfite in 1.5 ml of water was added dropwise while maintaining 0 ° C., and 0.16 g of copper sulfate pentahydrate was added. To this solution, the previously prepared diazonium salt solution and a solution of 0.73 g of sodium hydrogen sulfite in 1.5 ml of water were simultaneously added dropwise while maintaining 0 ° C. After completion of dropping, the mixture was stirred for 10 minutes, and the reaction solution was poured into ice water and then neutralized with an aqueous potassium hydroxide solution. Extraction was performed with chloroform (20 ml × 3), and the resulting organic layer was dehydrated and dried over saturated brine and then anhydrous sodium sulfate. After distilling off the solvent under reduced pressure, the resulting residue was purified by medium pressure preparative liquid chromatography eluting with n-hexane-ethyl acetate (5: 1 to 1: 2 gradient). 426 mg of product was obtained as a white solid.
1 H NMR (CDCl 3 , Me 4 Si, 300 MHz) δ 11.2 (brs, 1H), 8.10 (s, 1H), 4.33 (q, J = 7.2 Hz, 2H), 1.36 ( t, J = 7.2 Hz, 3H)
Reference example 4
Production of N- {3-chloro-1- (pyridin-3-yl) -1H-pyrazol-4-yl} -2- (ethylthio) -N- (methoxymethyl) propanamide (Compound A)
Process 1
Preparation of N- {3-chloro-1- (pyridin-3-yl) -1H-pyrazol-4-yl} -2- (ethylthio) propanamide To a solution of 2.5 g of 2- (ethylthio) propanoic acid in 5 ml of dichloromethane , 2.1 g of oxalyl chloride, and then 10 mg of N, N-dimethylformamide were added in this order, and the mixture was stirred at room temperature for 1 hour. After completion of the stirring, the solvent of the reaction solution was distilled off under reduced pressure, and 5 ml of dichloromethane was added to the resulting residue. This solution was added dropwise to a separately prepared solution of 2.5 g of 3-chloro-1- (pyridin-3-yl) -1H-pyrazol-4-amine and 1.5 g of pyridine in 20 ml of dichloromethane and stirred at room temperature for 40 minutes. did. After completion of the reaction, 15 ml of water was added to the reaction mixture and extracted with chloroform (20 ml × 2). The obtained organic layer was washed and dried in the order of saturated brine and then anhydrous sodium sulfate, and the solvent was distilled off under reduced pressure. The obtained solid was washed with diisopropyl ether to obtain 3.66 g of the desired product as a white solid.
Melting point: 104-105 ° C
Process 2
Preparation of N- {3-chloro-1- (pyridin-3-yl) -1H-pyrazol-4-yl} -2- (ethylthio) -N- (methoxymethyl) propanamide N- {3-Chloro-1 -(Pyridin-3-yl) -1H-pyrazol-4-yl} -2- (ethylthio) propanamide in 30 ml of tetrahydrofuran solution at 0 ° C., 60 wt% sodium hydride (dispersed in mineral oil) 0.23 g was added and stirred for 10 minutes. After completion of the stirring, 0.48 g of chloromethyl methyl ether was added to the reaction mixture while maintaining 0 ° C. After completion of the addition, stirring was continued for 1 hour at room temperature. After completion of the reaction, 15 ml of saturated aqueous ammonium chloride solution was added, and the mixture was extracted with chloroform (30 ml × 3). The obtained organic layer was washed and dried in the order of saturated brine and then anhydrous sodium sulfate, and the solvent was distilled off under reduced pressure. The obtained residue was purified by medium pressure preparative liquid chromatography eluting with n-hexane-ethyl acetate (9: 1 to 1: 1 gradient), and then again chloroform: methanol (99: 1 to 9). The product was purified by medium pressure preparative liquid chromatography eluting with a gradient of 1 to obtain 380 mg of the target product as a white solid.
Melting point: 68-69 ° C
This invention compound can be manufactured according to the said manufacturing method and an Example. Examples of the compound of the present invention produced in the same manner as in Synthesis Example 1 are shown in Table 1, and their physical properties are shown in Table 2. However, the present invention is not limited to these.
また「*1」は樹脂状で、同一構造であるが2種類の異性体混合物の場合を表す。異性体比が判明した場合は、第1表及び第2表にその比を記載する。また「m.p.」は融点を表す。 “* 1” is resinous and has the same structure but a mixture of two isomers. If the isomer ratio is known, the ratio is described in Tables 1 and 2. “M.p.” represents a melting point.
また、第1表中、Meと記載される置換基はメチル基を表し、Etとの記載はエチル基を表す。 In Table 1, the substituent described as Me represents a methyl group, and the description as Et represents an ethyl group.
また、実施例中に記載の記号は下記の意味を表す。
s:シングレット、d:ダブレット、t:トリプレット、q:カルテット、m:マルチプレット、br:ブロードピーク。
〔第1表〕
Moreover, the symbol described in an Example represents the following meaning.
s: singlet, d: doublet, t: triplet, q: quartet, m: multiplet, br: broad peak.
[Table 1]
―――――――――――――――――――――――――――――――――――――――
No. A R1 R2 R3 m.p.(℃)
―――――――――――――――――――――――――――――――――――――――
1-001 O Me H Cl 88-89
1-002 O Et H Cl 105-108
1-003 O Me Me Cl *1(〜5:4)
―――――――――――――――――――――――――――――――――――――――
〔第2表〕
――――――――――――――――――――――――――――――――――――――――
No.
プロトン核磁気共鳴ケミカルシフト値(CDCl3中):σ(ppm)
――――――――――――――――――――――――――――――――――――――――
1−003;
(異性体比5)8.94(d,J=2.4Hz,1H),8.70−8.50(m,1H),8.10−7.85(m,2H),7.44(dd,J=8.4,4.8Hz,1H),6.15−5.90(m,1H),3.48(s,3H),3.35−3.20(m,1H),2.16(s,3H),1.48(d,J=7.2Hz,3H),1.31(d,J=6.0Hz,3H)
(異性対比4)8.96(d,J=2.4Hz,1H),8.70−8.50(m,1H),8.10−7.85(m,2H),7.44(dd,J=8.4,4.8Hz,1H),6.15−5.90(m,1H),3.42(s,3H),3.35−3.20(m,1H),2.04(s,3H),1.41(d,J=7.2Hz,3H),1.16(d,J=6.0Hz,3H)
――――――――――――――――――――――――――――――――――――――――
第2表のプロトン核磁気共鳴ケミカルシフト値は、基準物質としてMe4Si(テトラメチルシラン)を用い、300MHzにて測定した。
[試験例]
次に、本発明化合物の有害生物防除剤としての有用性について、以下の試験例において具体的に説明するが、本発明はこれらのみに限定されるものではない。
試験例1 トビイロウンカに対する殺虫試験
本発明化合物の10%乳剤(化合物によっては10%水和剤を供試)を展着剤の入った水で希釈して、500ppm濃度の薬液を調製した。この薬液中にイネの葉鞘を約10秒間浸漬し、風乾後試験管に入れ、この中にトビイロウンカ(Nilaparvata lugens)の2齢幼虫を試験管当たり5頭放虫し、スポンジで蓋をして25℃恒温室に収容した。6日後の死虫数を調査し、死虫率(%)(死虫数÷供試虫数×100)を算出した。尚、試験は2連制で行なった。
―――――――――――――――――――――――――――――――――――――――
No. AR 1 R 2 R 3 mp (℃)
―――――――――――――――――――――――――――――――――――――――
1-001 O Me H Cl 88-89
1-002 O Et H Cl 105-108
1-003 O Me Me Cl * 1 (~ 5: 4)
―――――――――――――――――――――――――――――――――――――――
[Table 2]
――――――――――――――――――――――――――――――――――――――――
No.
Proton nuclear magnetic resonance chemical shift value (in CDCl 3 ): σ (ppm)
――――――――――――――――――――――――――――――――――――――――
1-003;
(Isomer ratio 5) 8.94 (d, J = 2.4 Hz, 1H), 8.70-8.50 (m, 1H), 8.10-7.85 (m, 2H), 7.44 (Dd, J = 8.4, 4.8 Hz, 1H), 6.15-5.90 (m, 1H), 3.48 (s, 3H), 3.35-3.20 (m, 1H) 2.16 (s, 3H), 1.48 (d, J = 7.2 Hz, 3H), 1.31 (d, J = 6.0 Hz, 3H)
(Isomeric contrast 4) 8.96 (d, J = 2.4 Hz, 1H), 8.70-8.50 (m, 1H), 8.10-7.85 (m, 2H), 7.44 ( dd, J = 8.4, 4.8 Hz, 1H), 6.15-5.90 (m, 1H), 3.42 (s, 3H), 3.35-3.20 (m, 1H), 2.04 (s, 3H), 1.41 (d, J = 7.2 Hz, 3H), 1.16 (d, J = 6.0 Hz, 3H)
――――――――――――――――――――――――――――――――――――――――
The proton nuclear magnetic resonance chemical shift values in Table 2 were measured at 300 MHz using Me 4 Si (tetramethylsilane) as a reference material.
[Test example]
Next, the usefulness of the compound of the present invention as a pest control agent will be specifically described in the following test examples, but the present invention is not limited to these.
Test Example 1 Insecticidal test against brown planthopper A 10% emulsion of the compound of the present invention (depending on the compound, 10% wettable powder) was diluted with water containing a spreading agent to prepare a chemical solution having a concentration of 500 ppm. Rice leaf sheaths are immersed in this chemical solution for about 10 seconds, air-dried and placed in a test tube, and 5 second-instar larvae of Nilaparvata lugens are released per test tube, covered with a sponge and 25 Housed in a constant temperature room. The number of dead insects after 6 days was investigated, and the death rate (%) (number of dead insects ÷ number of test insects × 100) was calculated. In addition, the test was performed by 2 continuous systems.
その結果、供試した化合物の内、下記の化合物が90%以上の死虫率を示した。
本発明化合物:1−001〜1−003
試験例2 シルバーリーフコナジラミに対する殺虫試験
内径7cmのスチロールカップに湿った濾紙を敷き、その上に3cmに切り取ったインゲンの葉を置いた。本発明化合物の10%乳剤(化合物によっては10%水和剤を供試)を展着剤の入った水で希釈して、500ppm濃度の薬液を調製し、回転式散布塔を用いて薬液をスチロールカップ当たり2.5mlずつ散布した(2.5mg/cm2)。葉を風乾後、シルバーリーフコナジラミ(Bemisia argentifolii)の成虫を放虫し、蓋をして25℃恒温室に収容した。5日後の死虫数を調査し、試験例1と同様の計算式から死虫率を算出した。尚、試験は2連制で行なった。
As a result, among the compounds tested, the following compounds showed a death rate of 90% or more.
The present compound: 1-001 to 1-003
Test Example 2 Insecticidal test for silver leaf whitefly A moist filter paper was laid on a styrene cup having an inner diameter of 7 cm, and a green leaf cut into 3 cm was placed thereon. A 10% emulsion of a compound of the present invention (depending on the compound, 10% wettable powder) is diluted with water containing a spreading agent to prepare a chemical solution with a concentration of 500 ppm, and the chemical solution is prepared using a rotary spray tower. 2.5 ml was sprayed per styrene cup (2.5 mg / cm 2 ). After the leaves were air-dried, adults of silver leaf whiteflies (Bemisia argentifolii) were released, covered, and housed in a thermostatic chamber at 25 ° C. The number of dead insects after 5 days was investigated, and the dead insect rate was calculated from the same calculation formula as in Test Example 1. In addition, the test was performed by 2 continuous systems.
その結果、供試した化合物の内、下記の化合物が90%以上の死虫率を示した。
本発明化合物: 1−001〜1−003
試験例3 モモアカアブラムシに対する殺虫試験
内径3cmのガラスシャーレに湿った脱脂綿を敷き、その上に同径に切り取ったカンランの葉を置き、モモアカアブラムシ(Myzus persicae)無翅成虫を4頭放虫した。1日後、本発明化合物の10%乳剤(化合物によっては10%水和剤を供試)を展着剤の入った水で希釈して、500ppm濃度の薬液を調製し、回転式散布塔にて薬液を散布(2.5mg/cm2)、蓋をして25℃恒温室に収容した。6日後の死虫数を調査し、試験例1と同様の計算式から死虫率を算出した。尚、試験は2連制で行なった。
As a result, among the compounds tested, the following compounds showed a death rate of 90% or more.
Compound of the present invention: 1-001 to 1-003
Test Example 3 Insecticidal test against peach aphid A moist absorbent cotton is laid on a glass petri dish with an inner diameter of 3 cm, and a kanran leaf cut out to the same diameter is placed thereon, and four mosquito aphids (Myzus persicae) adults are released. did. One day later, a 10% emulsion of the compound of the present invention (depending on the compound, 10% wettable powder was tested) was diluted with water containing a spreading agent to prepare a chemical solution with a concentration of 500 ppm, and then in a rotary spray tower. The chemical solution was sprayed (2.5 mg / cm 2 ), covered, and stored in a constant temperature room at 25 ° C. The number of dead insects after 6 days was investigated, and the death rate was calculated from the same calculation formula as in Test Example 1. In addition, the test was performed by 2 continuous systems.
その結果、供試した化合物の内、下記の化合物が90%以上の死虫率を示した。
本発明化合物:1−001〜1−003
試験例4 ワタアブラムシに対する殺虫試験
内径3cmのガラスシャーレに湿った脱脂綿を敷き、その上に同径に切り取ったキュウリの葉を置き、ワタアブラムシ(Aphis gossypii)無翅成虫を4頭放虫した。1日後、本発明化合物の10%乳剤(化合物によっては10%水和剤を供試)を展着剤の入った水で希釈して、100ppm濃度の薬液を調製し、回転式散布塔にて薬液を散布(2.5mg/cm2)、蓋をして25℃恒温室に収容した。6日後の死虫数を調査し、試験例1と同様の計算式から死虫率を算出した。尚、試験は2連制で行なった。
As a result, among the compounds tested, the following compounds showed a death rate of 90% or more.
The present compound: 1-001 to 1-003
Test Example 4 Insecticidal test for cotton aphids Wet cotton wool with a 3 cm inner diameter petri dish and a cucumber leaf cut out to the same diameter were placed on it, and four cotton aphids (Aphis gossypii) adults were released. One day later, a 10% emulsion of the compound of the present invention (depending on the compound, 10% wettable powder was tested) was diluted with water containing a spreading agent to prepare a chemical solution with a concentration of 100 ppm. The chemical solution was sprayed (2.5 mg / cm 2 ), covered, and stored in a constant temperature room at 25 ° C. The number of dead insects after 6 days was investigated, and the death rate was calculated from the same calculation formula as in Test Example 1. In addition, the test was performed by 2 continuous systems.
その結果、供試した化合物の内、下記の化合物が90%以上の死虫率を示した。
本発明化合物:1−001〜1−003
試験例5 モモアカアブラムシに対する土壌潅注処理試験
本発明化合物の10%乳剤を水道水で希釈して、100ppm濃度の薬液を調製した。
As a result, among the compounds tested, the following compounds showed a death rate of 90% or more.
The present compound: 1-001 to 1-003
Test Example 5 Soil irrigation treatment test for peach aphid A 10% emulsion of the compound of the present invention was diluted with tap water to prepare a chemical solution having a concentration of 100 ppm.
プラスチックカップ植えキャベツ苗(2.5本葉期)の株元土壌部分に10mlの薬液を潅注処理し、温室内に放置した。潅注処理1日後にモモアカアブラムシ(Myzus persicae)の成虫を20頭/株で放虫し、その後温室内に放置した。放虫6日後の生存虫数を調査し、下記の計算式から対照値を算出した。
対照値(%)={1−(Cb×Tai)/(Cai×Tb)}×100
式中の文字は下記を表している。
Cb:無処理区における処理前の虫の数
Cai:無処理区における最終調査時の生存虫数
Tb:処理区における処理前の虫の数
Tai:処理区における最終調査時の生存虫数
その結果、供試した化合物の内、下記の化合物が90%以上の対照値を示した。
本発明化合物:1−001〜1−003
試験例6 モモアカアブラムシに対する殺虫試験(その2)
内径3cmのガラスシャーレに湿った脱脂綿を敷き、その上に同径に切り取ったカンランの葉を置き、モモアカアブラムシ(Myzus persicae)無翅成虫を4頭放虫した。1日後、本発明化合物1−001の10%乳剤を展着剤の入った水で希釈して、0.625ppm濃度の薬液を調製し、回転式散布塔にて薬液を散布(2.5mg/cm2)した。散布終了後、蓋をして25℃恒温室に収容した。6日後の死虫数を調査し、試験例1と同様の計算式から死虫率を算出した。尚、試験は2連制で行なった。また、国際公開第2012/061290号記載のCompound No.474の化合物及び本明細書参考例記載の化合物Aについても同様の試験を行った。
10 ml of the chemical solution was irrigated to the stock soil portion of the plastic cup planted cabbage seedling (2.5 true leaf stage) and left in the greenhouse. One day after the irrigation treatment, 20 mosquitoes / strain of adult peach aphid (Myzus persicae) were released and then left in the greenhouse. The number of surviving insects 6 days after the release was examined, and a control value was calculated from the following formula.
Control value (%) = {1- (Cb × Tai) / (Cai × Tb)} × 100
The characters in the formula represent the following:
Cb: number of insects before treatment in the untreated group Cai: number of live insects at the time of final survey in the untreated group Tb: number of insects before treatment in the treated group Tai: number of live insects at the time of final survey in the treated group Among the compounds tested, the following compounds showed a control value of 90% or more.
The present compound: 1-001 to 1-003
Test Example 6 Insecticidal test against peach aphid (Part 2)
Moist absorbent cotton was laid on a glass petri dish with an inner diameter of 3 cm, and kanran leaves cut out to the same diameter were placed on the glass petri dish, and 4 mosquito aphids (Myzus persicae) adults were released. One day later, a 10% emulsion of the compound 1-001 of the present invention was diluted with water containing a spreading agent to prepare a chemical solution with a concentration of 0.625 ppm, and the chemical solution was sprayed on a rotary spray tower (2.5 mg / cm 2 ). After the completion of spraying, it was covered and stored in a constant temperature room at 25 ° C. The number of dead insects after 6 days was investigated, and the death rate was calculated from the same calculation formula as in Test Example 1. In addition, the test was performed by 2 continuous systems. In addition, Compound No. described in International Publication No. 2012/061290. A similar test was conducted on the compound 474 and the compound A described in Reference Examples of the present specification.
その結果、本発明化合物1−001の死虫率は90%であったが、国際公開第2012/061290号記載のCompound No.474の化合物の死虫率は40%であり、本明細書参考例記載の化合物Aの死虫率は30%であった。 As a result, although the death rate of the compound 1-001 of the present invention was 90%, Compound No. described in International Publication No. 2012/061290. The mortality rate of the compound 474 was 40%, and the mortality rate of the compound A described in Reference Examples of the present specification was 30%.
本発明における新規なピラゾールアミド誘導体は、優れた有害生物防除活性、特に殺虫・殺ダニ活性を示し、且つ、ホ乳動物、魚類及び益虫等の非標的生物に対してほとんど悪影響の無い、極めて有用な化合物である。 The novel pyrazole amide derivative in the present invention exhibits excellent pest control activity, particularly insecticidal / miticidal activity, and is extremely useful with little adverse effect on non-target organisms such as mammals, fish and beneficial insects. Compound.
Claims (8)
〔式中、Aは、酸素原子又は硫黄原子を表し、
R1は、C1〜C6アルキルを表し、
R2は、水素原子又はC1〜C6アルキルを表し、
R3は、ハロゲン原子又はC1〜C6アルキルを表し、
rは、0乃至2の整数を表す。〕で表されるピラゾールアミド誘導体又はその塩。 Formula (1):
[In the formula, A represents an oxygen atom or a sulfur atom,
R 1 represents C 1 -C 6 alkyl;
R 2 represents a hydrogen atom or C 1 -C 6 alkyl,
R 3 represents a halogen atom or C 1 -C 6 alkyl,
r represents an integer of 0 to 2. ] The pyrazole amide derivative represented by these, or its salt.
R1は、メチル基又はエチル基を表し、
R2は、水素原子又はメチル基を表し、
R3は、塩素原子を表し、
rは、0を表す請求項1記載のピラゾールアミド誘導体又はその塩。 A represents an oxygen atom,
R 1 represents a methyl group or an ethyl group,
R 2 represents a hydrogen atom or a methyl group,
R 3 represents a chlorine atom,
The pyrazole amide derivative or a salt thereof according to claim 1, wherein r represents 0.
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| JP2020503301A (en) * | 2016-12-29 | 2020-01-30 | ダウ アグロサイエンシィズ エルエルシー | Method for preparing pesticidal compounds |
| JP7097363B2 (en) | 2016-12-29 | 2022-07-07 | コルテバ アグリサイエンス エルエルシー | Preparation method of pesticidal compound |
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