WO2016013875A1 - Dispositif électroluminescent organique - Google Patents
Dispositif électroluminescent organique Download PDFInfo
- Publication number
- WO2016013875A1 WO2016013875A1 PCT/KR2015/007636 KR2015007636W WO2016013875A1 WO 2016013875 A1 WO2016013875 A1 WO 2016013875A1 KR 2015007636 W KR2015007636 W KR 2015007636W WO 2016013875 A1 WO2016013875 A1 WO 2016013875A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- substituted
- unsubstituted
- arylsilyl
- alkyl
- aryl
- Prior art date
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- Ceased
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- 0 C*1c(c(-c2c(*3Nc(cccc4)c4C(c(cc4)ccc4C4=CC=CCC4C)=N)cccc2)c3cc2)c2-c2ccccc12 Chemical compound C*1c(c(-c2c(*3Nc(cccc4)c4C(c(cc4)ccc4C4=CC=CCC4C)=N)cccc2)c3cc2)c2-c2ccccc12 0.000 description 26
- CUPCKLPCIOTNBF-UHFFFAOYSA-N C(C(C=C1c2c3cccc2)c(cc2)cc(c4ccccc44)c2[n]4-c2ccccc2)C=C1N3c(cc1)ccc1-c1ccccc1 Chemical compound C(C(C=C1c2c3cccc2)c(cc2)cc(c4ccccc44)c2[n]4-c2ccccc2)C=C1N3c(cc1)ccc1-c1ccccc1 CUPCKLPCIOTNBF-UHFFFAOYSA-N 0.000 description 1
- VFGMHKLCBLCTPF-UHFFFAOYSA-N C(C(C=C1c2c3cccc2)c(cc2)ccc2-c(cc2)cc(c4ccccc44)c2[n]4-c(cc2)ccc2-c2ccccc2)C=C1N3c1cc(-c2cccc(S(c3ccccc3)(c3ccccc3)c3ccccc3)c2)ccc1 Chemical compound C(C(C=C1c2c3cccc2)c(cc2)ccc2-c(cc2)cc(c4ccccc44)c2[n]4-c(cc2)ccc2-c2ccccc2)C=C1N3c1cc(-c2cccc(S(c3ccccc3)(c3ccccc3)c3ccccc3)c2)ccc1 VFGMHKLCBLCTPF-UHFFFAOYSA-N 0.000 description 1
- OBWNLTDNUWZIPP-UHFFFAOYSA-N C(C1)C1c1cccc(-[n]2c3c4[o]c5ccccc5c4ccc3c(cc3)c2cc3-c2ccccc2)c1 Chemical compound C(C1)C1c1cccc(-[n]2c3c4[o]c5ccccc5c4ccc3c(cc3)c2cc3-c2ccccc2)c1 OBWNLTDNUWZIPP-UHFFFAOYSA-N 0.000 description 1
- LJVAFVQMYRADLQ-UHFFFAOYSA-N C(C1)C=CC=C1[n]1c(ccc(-c(cccc2)c2-c(cc2)cc(c3c4cccc3)c2[n]4-c2cccc3c2cccc3)c2)c2c2ccccc12 Chemical compound C(C1)C=CC=C1[n]1c(ccc(-c(cccc2)c2-c(cc2)cc(c3c4cccc3)c2[n]4-c2cccc3c2cccc3)c2)c2c2ccccc12 LJVAFVQMYRADLQ-UHFFFAOYSA-N 0.000 description 1
- UQZLIGXPFBKWGQ-UHFFFAOYSA-N C(C1c2c3ccc(-c(cccc4)c4-c(cc4)cc(c5c6cccc5)c4[n]6-c4cc5ccccc5cc4)c2)=CC=CC1N3c1ccccc1 Chemical compound C(C1c2c3ccc(-c(cccc4)c4-c(cc4)cc(c5c6cccc5)c4[n]6-c4cc5ccccc5cc4)c2)=CC=CC1N3c1ccccc1 UQZLIGXPFBKWGQ-UHFFFAOYSA-N 0.000 description 1
- KPNVPQBDXSRQQN-UHFFFAOYSA-N C(CC=CC1)C1[Si](c1ccccc1)(c1ccccc1)c(cc1)cc(cc2)c1cc2-[n](c(cccc1)c1c1c2)c1ccc2-c(cc1)ccc1-c(cc1)cc(c2ccccc22)c1[n]2-c1ccccc1 Chemical compound C(CC=CC1)C1[Si](c1ccccc1)(c1ccccc1)c(cc1)cc(cc2)c1cc2-[n](c(cccc1)c1c1c2)c1ccc2-c(cc1)ccc1-c(cc1)cc(c2ccccc22)c1[n]2-c1ccccc1 KPNVPQBDXSRQQN-UHFFFAOYSA-N 0.000 description 1
- NEXKNTHYQZQYGL-UHFFFAOYSA-N C1C2C(c3ccccc3)=NC(c3ccccc3)=NC2C1 Chemical compound C1C2C(c3ccccc3)=NC(c3ccccc3)=NC2C1 NEXKNTHYQZQYGL-UHFFFAOYSA-N 0.000 description 1
- BAOZQZPGQWXJOW-UHFFFAOYSA-N C1C2C=CCC12 Chemical compound C1C2C=CCC12 BAOZQZPGQWXJOW-UHFFFAOYSA-N 0.000 description 1
- YHAWOPREAYSGMW-UHFFFAOYSA-O C1C=C2N(C3[NH2+]c(cccc4)c4N=C3c3ccccc3)c(cccc3)c3C2=CC1c(cc1)cc(c2c(cccc3)c3ccc22)c1[n]2-c1ccccc1 Chemical compound C1C=C2N(C3[NH2+]c(cccc4)c4N=C3c3ccccc3)c(cccc3)c3C2=CC1c(cc1)cc(c2c(cccc3)c3ccc22)c1[n]2-c1ccccc1 YHAWOPREAYSGMW-UHFFFAOYSA-O 0.000 description 1
- HXEKORDMRXWGKI-UHFFFAOYSA-O C1C=CC(C2(c(cc(c(cccc3)c3[n]3-c(cc4)ccc4[NH+]4C(c5ccccc5)=NC4c4ccccc4)c3c3)c3-c3c2cccc3)c2ccccc2)=CC1 Chemical compound C1C=CC(C2(c(cc(c(cccc3)c3[n]3-c(cc4)ccc4[NH+]4C(c5ccccc5)=NC4c4ccccc4)c3c3)c3-c3c2cccc3)c2ccccc2)=CC1 HXEKORDMRXWGKI-UHFFFAOYSA-O 0.000 description 1
- JWSWVXDOFXFKQC-UHFFFAOYSA-O C1C=CC=CC1[Si](c1ccccc1)(c1ccccc1)c(cc1)cc2c1-c(cc(cc1)-c(cc3)cc(c4ccccc44)c3[n]4-c3ccccc3)c1[NH+]2c1ccccc1 Chemical compound C1C=CC=CC1[Si](c1ccccc1)(c1ccccc1)c(cc1)cc2c1-c(cc(cc1)-c(cc3)cc(c4ccccc44)c3[n]4-c3ccccc3)c1[NH+]2c1ccccc1 JWSWVXDOFXFKQC-UHFFFAOYSA-O 0.000 description 1
- JWDOHOFNTFXGBZ-UHFFFAOYSA-N C1C=CC=CC1[n]1c(ccc(-c(cc2c3c4cccc3)ccc2[n]4-c2ccccc2)c2)c2c2ccccc12 Chemical compound C1C=CC=CC1[n]1c(ccc(-c(cc2c3c4cccc3)ccc2[n]4-c2ccccc2)c2)c2c2ccccc12 JWDOHOFNTFXGBZ-UHFFFAOYSA-N 0.000 description 1
- AEYGJUSXWWJZQV-UHFFFAOYSA-N C1C=CC=CC1[n]1c(ccc(-c2c3[s]c4ccccc4c3ccc2)c2)c2c2c1ccc(-c(cc1)cc(c3ccccc33)c1[n]3-c1ccccc1)c2 Chemical compound C1C=CC=CC1[n]1c(ccc(-c2c3[s]c4ccccc4c3ccc2)c2)c2c2c1ccc(-c(cc1)cc(c3ccccc33)c1[n]3-c1ccccc1)c2 AEYGJUSXWWJZQV-UHFFFAOYSA-N 0.000 description 1
- HFLZBRYZNWFPGD-UHFFFAOYSA-N C1C=CC=CC1[n]1c(ccc(C(C2)C=CC=C2c(cc2)cc(c3c4cccc3)c2[n]4-c2ccc(cccc3)c3c2)c2)c2c2ccccc12 Chemical compound C1C=CC=CC1[n]1c(ccc(C(C2)C=CC=C2c(cc2)cc(c3c4cccc3)c2[n]4-c2ccc(cccc3)c3c2)c2)c2c2ccccc12 HFLZBRYZNWFPGD-UHFFFAOYSA-N 0.000 description 1
- JLFOTJPUXSRWBN-UHFFFAOYSA-N CC(C)(c(cccc1)c1-c1c2c3c4cccc3)c1ccc2[n]4C(C(C1)c2ccccc2)=Nc2c1cccc2 Chemical compound CC(C)(c(cccc1)c1-c1c2c3c4cccc3)c1ccc2[n]4C(C(C1)c2ccccc2)=Nc2c1cccc2 JLFOTJPUXSRWBN-UHFFFAOYSA-N 0.000 description 1
- OCTIDMWTCFGGNY-UHFFFAOYSA-N CC(C)(c1ccccc1-1)c(cc2)c-1c(c1c3cccc1)c2[n]3-c1cc(C)ccc1 Chemical compound CC(C)(c1ccccc1-1)c(cc2)c-1c(c1c3cccc1)c2[n]3-c1cc(C)ccc1 OCTIDMWTCFGGNY-UHFFFAOYSA-N 0.000 description 1
- IEXMLGSHKZWPOT-UHFFFAOYSA-P CC(C)(c1ccccc1-c1c2c3ccccc33)c1ccc2[n]3[N+]1=C(c2cccc3c2[o]c2c3cccc2)[NH2+]C1c1ccccc1 Chemical compound CC(C)(c1ccccc1-c1c2c3ccccc33)c1ccc2[n]3[N+]1=C(c2cccc3c2[o]c2c3cccc2)[NH2+]C1c1ccccc1 IEXMLGSHKZWPOT-UHFFFAOYSA-P 0.000 description 1
- MFJIIPIFSUDMDA-UHFFFAOYSA-N CC(C1)C(C#N)=CC=C1c1cccc(-[n](c(cccc2)c2c2c3)c2ccc3-c(cc2)ccc2-c(cc2)cc(c3ccccc33)c2[n]3-c2ccccc2)c1 Chemical compound CC(C1)C(C#N)=CC=C1c1cccc(-[n](c(cccc2)c2c2c3)c2ccc3-c(cc2)ccc2-c(cc2)cc(c3ccccc33)c2[n]3-c2ccccc2)c1 MFJIIPIFSUDMDA-UHFFFAOYSA-N 0.000 description 1
- DEIUUZCJLRMABC-UHFFFAOYSA-N CC(C1)C1C1C=CC2C1C2 Chemical compound CC(C1)C1C1C=CC2C1C2 DEIUUZCJLRMABC-UHFFFAOYSA-N 0.000 description 1
- PMIQZXHZFVJQDP-UHFFFAOYSA-N CC(C1)C=CC=C1N(c1ccccc1)c(cc1)ccc1-c(cc1)ccc1-[n]1c(cc(cc2)-c3c4[s]c(cccc5)c5c4ccc3)c2c2c1cccc2 Chemical compound CC(C1)C=CC=C1N(c1ccccc1)c(cc1)ccc1-c(cc1)ccc1-[n]1c(cc(cc2)-c3c4[s]c(cccc5)c5c4ccc3)c2c2c1cccc2 PMIQZXHZFVJQDP-UHFFFAOYSA-N 0.000 description 1
- LEXKJXIPHPAOQV-UHFFFAOYSA-N CC(C1)C=CC=C1[n]1c(ccc(-c(cccc2)c2-c(cc2)ccc2-c(cc2)cc(c3ccccc33)c2[n]3-c2ccccc2)c2)c2c2c1cccc2 Chemical compound CC(C1)C=CC=C1[n]1c(ccc(-c(cccc2)c2-c(cc2)ccc2-c(cc2)cc(c3ccccc33)c2[n]3-c2ccccc2)c2)c2c2c1cccc2 LEXKJXIPHPAOQV-UHFFFAOYSA-N 0.000 description 1
- VOWLXNORQSKAGC-UHFFFAOYSA-N CC(C12)C=CC=C1C(C)(C)c1c2c(cccc2)c2c2c1c1ccccc1[n]2-c(cc1)ccc1-c(cc1)ccc1N(c1ccccc1)c1ccccc1 Chemical compound CC(C12)C=CC=C1C(C)(C)c1c2c(cccc2)c2c2c1c1ccccc1[n]2-c(cc1)ccc1-c(cc1)ccc1N(c1ccccc1)c1ccccc1 VOWLXNORQSKAGC-UHFFFAOYSA-N 0.000 description 1
- DZFCXDZTRAEJOI-UHFFFAOYSA-N CC(CC=C1)c2c1c(cccc1)c1[n]2-c(cc1)ccc1-c(cc1)cc(c2ccccc22)c1[n]2-c1cc(C(C=C2)=CCC2(C)C#N)ccc1 Chemical compound CC(CC=C1)c2c1c(cccc1)c1[n]2-c(cc1)ccc1-c(cc1)cc(c2ccccc22)c1[n]2-c1cc(C(C=C2)=CCC2(C)C#N)ccc1 DZFCXDZTRAEJOI-UHFFFAOYSA-N 0.000 description 1
- PXNUXDGMSBDBLR-UHFFFAOYSA-O CC1(C)c(cc(c(c2c3cccc2)c2)[n]3-c3cc(C4=NC(c5ccccc5)=[NH+]C(c5cccc(C#N)c5)N4)ccc3)c2-c2c1cccc2 Chemical compound CC1(C)c(cc(c(c2c3cccc2)c2)[n]3-c3cc(C4=NC(c5ccccc5)=[NH+]C(c5cccc(C#N)c5)N4)ccc3)c2-c2c1cccc2 PXNUXDGMSBDBLR-UHFFFAOYSA-O 0.000 description 1
- DKZIDMXJCMXPJA-UHFFFAOYSA-N CC1(C=C2)c3ccccc3OC1c(c1ccccc11)c2[n]1-c(cc1)ccc1-c(cc1)ccc1N(c1ccccc1)c1cc2ccccc2cc1 Chemical compound CC1(C=C2)c3ccccc3OC1c(c1ccccc11)c2[n]1-c(cc1)ccc1-c(cc1)ccc1N(c1ccccc1)c1cc2ccccc2cc1 DKZIDMXJCMXPJA-UHFFFAOYSA-N 0.000 description 1
- WLSAHMQWVJZKCD-UHFFFAOYSA-N CC1(C=CC(c(cc2c3c4cccc3)ccc2[n]4-c(cc2)ccc2-c(cc2)ccc2C#N)=CC1)c(cc1)cc(c2ccccc22)c1[n]2-c1ccccc1 Chemical compound CC1(C=CC(c(cc2c3c4cccc3)ccc2[n]4-c(cc2)ccc2-c(cc2)ccc2C#N)=CC1)c(cc1)cc(c2ccccc22)c1[n]2-c1ccccc1 WLSAHMQWVJZKCD-UHFFFAOYSA-N 0.000 description 1
- IWJIZHWNGMBFPG-UHFFFAOYSA-N CC1(c(cc(cc2)-c(cc3)ccc3-[n]3c4cc(C#N)ccc4c4ccccc34)c2N2c3cc(-c4ccccc4)ccc3)C2=CC=CC1 Chemical compound CC1(c(cc(cc2)-c(cc3)ccc3-[n]3c4cc(C#N)ccc4c4ccccc34)c2N2c3cc(-c4ccccc4)ccc3)C2=CC=CC1 IWJIZHWNGMBFPG-UHFFFAOYSA-N 0.000 description 1
- DHHWSMPTCSTBLW-UHFFFAOYSA-N CC1C(C2=NC(c3ccccc3)=[N+]2c(cc2)ccc2N2c(cc(cc3)-c4ccccc4)c3C3=CC=C4c5ccccc5SC4C23C)=CC=CC1 Chemical compound CC1C(C2=NC(c3ccccc3)=[N+]2c(cc2)ccc2N2c(cc(cc3)-c4ccccc4)c3C3=CC=C4c5ccccc5SC4C23C)=CC=CC1 DHHWSMPTCSTBLW-UHFFFAOYSA-N 0.000 description 1
- IXJHTKNSJHECRV-UHFFFAOYSA-N CC1C(c(cc2)ccc2N(c(cc2)ccc2-[n](c(cccc2)c2c2c3)c2ccc3-c2cccc3c2[o]c2ccccc32)C(C=C2)=CCC2(C)c2ccccc2)=CC=CC1 Chemical compound CC1C(c(cc2)ccc2N(c(cc2)ccc2-[n](c(cccc2)c2c2c3)c2ccc3-c2cccc3c2[o]c2ccccc32)C(C=C2)=CCC2(C)c2ccccc2)=CC=CC1 IXJHTKNSJHECRV-UHFFFAOYSA-N 0.000 description 1
- RGDBHLZFBIZZHS-UHFFFAOYSA-N CC1C=C2N=C(c(cc3)ccc3-[n]3c4c5[o]c6ccccc6c5ccc4c4c3cccc4)N=C(c3ccccc3)C2=CC1 Chemical compound CC1C=C2N=C(c(cc3)ccc3-[n]3c4c5[o]c6ccccc6c5ccc4c4c3cccc4)N=C(c3ccccc3)C2=CC1 RGDBHLZFBIZZHS-UHFFFAOYSA-N 0.000 description 1
- AQAYHEWCWLNZLX-UHFFFAOYSA-N CC1C=C2Sc(c3c(cc4)c5ccccc5[n]3C(C3)=CC=CC3c3nc5ccccc5c(-c5ccccc5)n3)c4C2=CC1 Chemical compound CC1C=C2Sc(c3c(cc4)c5ccccc5[n]3C(C3)=CC=CC3c3nc5ccccc5c(-c5ccccc5)n3)c4C2=CC1 AQAYHEWCWLNZLX-UHFFFAOYSA-N 0.000 description 1
- NCOPYARWYNGJJA-UHFFFAOYSA-N CC1C=CC(c2cccc(-c(cc3)ccc3-[n](c3ccccc3c3c4)c3ccc4-c(cc3)cc(C4C5=CC(C#N)=CC4)c3N5C3=CC(C)CC=C3)c2)=CC1 Chemical compound CC1C=CC(c2cccc(-c(cc3)ccc3-[n](c3ccccc3c3c4)c3ccc4-c(cc3)cc(C4C5=CC(C#N)=CC4)c3N5C3=CC(C)CC=C3)c2)=CC1 NCOPYARWYNGJJA-UHFFFAOYSA-N 0.000 description 1
- JZPHJDJXTYZZBJ-UHFFFAOYSA-O CCC(C(C1)C1c1ccccc1)N=C(c(cc1)ccc1-c1ccccc1)[NH3+] Chemical compound CCC(C(C1)C1c1ccccc1)N=C(c(cc1)ccc1-c1ccccc1)[NH3+] JZPHJDJXTYZZBJ-UHFFFAOYSA-O 0.000 description 1
- DDHJWVBKHOANKD-UHFFFAOYSA-N CN1c2ccccc2C(c2ccccc2)=NC1c1cccc(-[n]2c(cc(c3ccccc3[s]3)c3c3)c3c3ccccc23)c1 Chemical compound CN1c2ccccc2C(c2ccccc2)=NC1c1cccc(-[n]2c(cc(c3ccccc3[s]3)c3c3)c3c3ccccc23)c1 DDHJWVBKHOANKD-UHFFFAOYSA-N 0.000 description 1
- RSOQDBSSXNIOAV-UHFFFAOYSA-N CNC(C1)(CNC1c1ccccc1)c1ccccc1 Chemical compound CNC(C1)(CNC1c1ccccc1)c1ccccc1 RSOQDBSSXNIOAV-UHFFFAOYSA-N 0.000 description 1
- WKGHFOOAZRABET-MIJGTKDRSA-N C[C@]1(c(cccc2)c2C2=C1C2c(cc1)ccc1-[n](c(cccc1)c1c1c2)c1cc1c2[s]c2ccccc12)c1ccccc1 Chemical compound C[C@]1(c(cccc2)c2C2=C1C2c(cc1)ccc1-[n](c(cccc1)c1c1c2)c1cc1c2[s]c2ccccc12)c1ccccc1 WKGHFOOAZRABET-MIJGTKDRSA-N 0.000 description 1
- HDBYRTIFZDGPPC-UHFFFAOYSA-N Cc1cc(-[n]2c3ccccc3c3c2CCC(c(cc2)cc(c4ccccc44)c2[n]4-c2ccccc2)=C3)ccc1 Chemical compound Cc1cc(-[n]2c3ccccc3c3c2CCC(c(cc2)cc(c4ccccc44)c2[n]4-c2ccccc2)=C3)ccc1 HDBYRTIFZDGPPC-UHFFFAOYSA-N 0.000 description 1
- HNLAOSYGUKPAKH-UHFFFAOYSA-N Cc1cccc(-[n](c(cccc2)c2c2c3)c2ccc3-c(cc2)cc(c3ccccc33)c2[n]3-c2cc(C)ccc2)c1 Chemical compound Cc1cccc(-[n](c(cccc2)c2c2c3)c2ccc3-c(cc2)cc(c3ccccc33)c2[n]3-c2cc(C)ccc2)c1 HNLAOSYGUKPAKH-UHFFFAOYSA-N 0.000 description 1
- VXFCQAYFYBERAT-UHFFFAOYSA-N Fc(cc1)ccc1N1C2=CCCC=C2C2=C1CCC(c(cc1c3c4cccc3)ccc1[n]4-c(cc1)ccc1-c1cc3ccccc3cc1)=C2 Chemical compound Fc(cc1)ccc1N1C2=CCCC=C2C2=C1CCC(c(cc1c3c4cccc3)ccc1[n]4-c(cc1)ccc1-c1cc3ccccc3cc1)=C2 VXFCQAYFYBERAT-UHFFFAOYSA-N 0.000 description 1
- PDINMNHEWXBDIG-UHFFFAOYSA-N N#CC(CC1)=CC=C1[n]1c(ccc(-c(cc2c3c4cccc3)ccc2[n]4-c2ccc(C(CC=C3)C=C3c3ccccc3)cc2)c2)c2c2ccccc12 Chemical compound N#CC(CC1)=CC=C1[n]1c(ccc(-c(cc2c3c4cccc3)ccc2[n]4-c2ccc(C(CC=C3)C=C3c3ccccc3)cc2)c2)c2c2ccccc12 PDINMNHEWXBDIG-UHFFFAOYSA-N 0.000 description 1
- IZKXQPJNAMMUOC-UHFFFAOYSA-N N#CC1C=CC(c(cc2)ccc2-[n]2c(ccc(-c(cc3)ccc3-[n]3c4ccccc4c4c3cccc4)c3)c3c3ccccc23)=CC1 Chemical compound N#CC1C=CC(c(cc2)ccc2-[n]2c(ccc(-c(cc3)ccc3-[n]3c4ccccc4c4c3cccc4)c3)c3c3ccccc23)=CC1 IZKXQPJNAMMUOC-UHFFFAOYSA-N 0.000 description 1
- FLOOGENXYPTHFE-UHFFFAOYSA-N N#Cc(cc1)cc(c2c3ccc(-c(cc4)ccc4-c(cc4c5ccccc55)ccc4[n]5-c4ccccc4)c2)c1[n]3-c1cc2ccccc2cc1 Chemical compound N#Cc(cc1)cc(c2c3ccc(-c(cc4)ccc4-c(cc4c5ccccc55)ccc4[n]5-c4ccccc4)c2)c1[n]3-c1cc2ccccc2cc1 FLOOGENXYPTHFE-UHFFFAOYSA-N 0.000 description 1
- YBMDPRZMGDSSPQ-UHFFFAOYSA-N N#Cc(cc1)ccc1-c(cc1)ccc1-[n](c(cccc1)c1c1c2)c1ccc2-c(cc1)ccc1-c(cc1)cc(c2ccccc22)c1[n]2-c(cc1)ccc1-c1ccccc1 Chemical compound N#Cc(cc1)ccc1-c(cc1)ccc1-[n](c(cccc1)c1c1c2)c1ccc2-c(cc1)ccc1-c(cc1)cc(c2ccccc22)c1[n]2-c(cc1)ccc1-c1ccccc1 YBMDPRZMGDSSPQ-UHFFFAOYSA-N 0.000 description 1
- AWRXLRVWPROGIQ-UHFFFAOYSA-N N#Cc(cc1)ccc1-c1cccc(-[n](c2ccccc2c2c3)c2ccc3-c(cc2)ccc2-c(cc2)cc(c3ccccc33)c2[n]3-c(cc2)ccc2-c2ccccc2)c1 Chemical compound N#Cc(cc1)ccc1-c1cccc(-[n](c2ccccc2c2c3)c2ccc3-c(cc2)ccc2-c(cc2)cc(c3ccccc33)c2[n]3-c(cc2)ccc2-c2ccccc2)c1 AWRXLRVWPROGIQ-UHFFFAOYSA-N 0.000 description 1
- KGOHBHFAHOQNRL-UHFFFAOYSA-N N#Cc(cc1c2cc(-c(cc3)cc(c4ccccc44)c3[n]4-c3ccccc3)ccc22)ccc1[n]2-c1cc(-c2ccccc2)ccc1 Chemical compound N#Cc(cc1c2cc(-c(cc3)cc(c4ccccc44)c3[n]4-c3ccccc3)ccc22)ccc1[n]2-c1cc(-c2ccccc2)ccc1 KGOHBHFAHOQNRL-UHFFFAOYSA-N 0.000 description 1
- RHUBIMGUMQFNTH-UHFFFAOYSA-N N#Cc1cc(-c2cccc(-[n]3c(ccc(-c(cc4)ccc4-[n]4c5ccccc5c5c4cccc5)c4)c4c4ccccc34)c2)ccc1 Chemical compound N#Cc1cc(-c2cccc(-[n]3c(ccc(-c(cc4)ccc4-[n]4c5ccccc5c5c4cccc5)c4)c4c4ccccc34)c2)ccc1 RHUBIMGUMQFNTH-UHFFFAOYSA-N 0.000 description 1
- BHGCLIVVLHUSAN-UHFFFAOYSA-N N#Cc1cc(C2=CC([n](c(cccc3)c3c3c4)c3ccc4-c(cc3)cc(c4ccccc44)c3[n]4-c3ccccc3)=CCC2)ccc1 Chemical compound N#Cc1cc(C2=CC([n](c(cccc3)c3c3c4)c3ccc4-c(cc3)cc(c4ccccc44)c3[n]4-c3ccccc3)=CCC2)ccc1 BHGCLIVVLHUSAN-UHFFFAOYSA-N 0.000 description 1
- NSGTVVHDFSFPTP-UHFFFAOYSA-N N#Cc1cc(C2NC(c3cccc(-[n](c(cccc4)c4c4c5)c4cc(C4(c6ccccc6)c6ccccc6)c5-c5c4cccc5)c3)=NC(c3ccccc3)=C2)ccc1 Chemical compound N#Cc1cc(C2NC(c3cccc(-[n](c(cccc4)c4c4c5)c4cc(C4(c6ccccc6)c6ccccc6)c5-c5c4cccc5)c3)=NC(c3ccccc3)=C2)ccc1 NSGTVVHDFSFPTP-UHFFFAOYSA-N 0.000 description 1
- CCEBMCMBUDAPPQ-UHFFFAOYSA-N N#Cc1ccc(c(cccc2)c2[n]2-c(cc3)ccc3-c(cc3)cc(c4ccccc44)c3[n]4-c(cc3)ccc3-c3ccccc3)c2c1 Chemical compound N#Cc1ccc(c(cccc2)c2[n]2-c(cc3)ccc3-c(cc3)cc(c4ccccc44)c3[n]4-c(cc3)ccc3-c3ccccc3)c2c1 CCEBMCMBUDAPPQ-UHFFFAOYSA-N 0.000 description 1
- VXSLQPVVHJHCGG-UHFFFAOYSA-N N#Cc1ccc(c2cc(-c(cc3)cc(c4ccccc44)c3[n]4-c3ccccc3)ccc2[n]2-c3cc(-c4ccccc4)ccc3)c2c1 Chemical compound N#Cc1ccc(c2cc(-c(cc3)cc(c4ccccc44)c3[n]4-c3ccccc3)ccc2[n]2-c3cc(-c4ccccc4)ccc3)c2c1 VXSLQPVVHJHCGG-UHFFFAOYSA-N 0.000 description 1
- RDSKLQBSDXTRRE-UHFFFAOYSA-N N#Cc1cccc(-[n]2c(ccc(-c(cc3)cc(c4c5cccc4)c3[n]5-c(cc3)ccc3-c3cc(-c4ccccc4)ccc3)c3)c3c3ccccc23)c1 Chemical compound N#Cc1cccc(-[n]2c(ccc(-c(cc3)cc(c4c5cccc4)c3[n]5-c(cc3)ccc3-c3cc(-c4ccccc4)ccc3)c3)c3c3ccccc23)c1 RDSKLQBSDXTRRE-UHFFFAOYSA-N 0.000 description 1
- FHXPFHSLTAWYNS-UHFFFAOYSA-N N#Cc1cccc(-[n]2c(ccc(-c(cc3)ccc3-[n]3c4ccccc4c4c3cccc4)c3)c3c3ccccc23)c1 Chemical compound N#Cc1cccc(-[n]2c(ccc(-c(cc3)ccc3-[n]3c4ccccc4c4c3cccc4)c3)c3c3ccccc23)c1 FHXPFHSLTAWYNS-UHFFFAOYSA-N 0.000 description 1
- WAXIASOQSFHBAG-UHFFFAOYSA-N N#Cc1cccc(-c(cc2)ccc2-[n]2c(ccc(-c(cc3)ccc3-[n]3c4ccccc4c4c3cccc4)c3)c3c3ccccc23)c1 Chemical compound N#Cc1cccc(-c(cc2)ccc2-[n]2c(ccc(-c(cc3)ccc3-[n]3c4ccccc4c4c3cccc4)c3)c3c3ccccc23)c1 WAXIASOQSFHBAG-UHFFFAOYSA-N 0.000 description 1
- KTFFUDWXTREAGL-UHFFFAOYSA-N c(cc1)ccc1-[n](c(cccc1)c1c1c2)c1ccc2-c(cc1)cc(cc2)c1cc2-c(cc1)cc(c2ccccc22)c1[n]2-c1ccccc1 Chemical compound c(cc1)ccc1-[n](c(cccc1)c1c1c2)c1ccc2-c(cc1)cc(cc2)c1cc2-c(cc1)cc(c2ccccc22)c1[n]2-c1ccccc1 KTFFUDWXTREAGL-UHFFFAOYSA-N 0.000 description 1
- FEIBRDHSRYBMHJ-UHFFFAOYSA-N c(cc1)ccc1-[n](c(cccc1)c1c1c2)c1ccc2-c(cc1)ccc1-c(cc1)ccc1-c(cc1)cc(c2ccccc22)c1[n]2-c1ccccc1 Chemical compound c(cc1)ccc1-[n](c(cccc1)c1c1c2)c1ccc2-c(cc1)ccc1-c(cc1)ccc1-c(cc1)cc(c2ccccc22)c1[n]2-c1ccccc1 FEIBRDHSRYBMHJ-UHFFFAOYSA-N 0.000 description 1
- AGMVNMYTUIVDOE-UHFFFAOYSA-N c(cc1)ccc1-[n](c1ccccc1c1c2)c1ccc2-c1ccccc1-c(cccc1)c1-c(cc1)cc(c2ccccc22)c1[n]2-c1ccccc1 Chemical compound c(cc1)ccc1-[n](c1ccccc1c1c2)c1ccc2-c1ccccc1-c(cccc1)c1-c(cc1)cc(c2ccccc22)c1[n]2-c1ccccc1 AGMVNMYTUIVDOE-UHFFFAOYSA-N 0.000 description 1
- UFRMKJXURMUBOJ-UHFFFAOYSA-N c(cc1)ccc1-[n]1c(ccc(-c(cc2)ccc2-[n]2c3ccccc3c3c2cccc3)c2)c2c2ccccc12 Chemical compound c(cc1)ccc1-[n]1c(ccc(-c(cc2)ccc2-[n]2c3ccccc3c3c2cccc3)c2)c2c2ccccc12 UFRMKJXURMUBOJ-UHFFFAOYSA-N 0.000 description 1
- VSVLFZWEWVNXIL-UHFFFAOYSA-N c(cc1)ccc1-[n]1c(ccc(-c(cc2c3c4cccc3)ccc2[n]4-c2c(cccc3)c3ccc2)c2)c2c2ccccc12 Chemical compound c(cc1)ccc1-[n]1c(ccc(-c(cc2c3c4cccc3)ccc2[n]4-c2c(cccc3)c3ccc2)c2)c2c2ccccc12 VSVLFZWEWVNXIL-UHFFFAOYSA-N 0.000 description 1
- DOIMVPRXJQAQNG-UHFFFAOYSA-N c(cc1)ccc1-[n]1c(ccc(-c2cc(-c(cccc3)c3-c(cc3)cc(c4ccccc44)c3[n]4-c3ccccc3)ccc2)c2)c2c2ccccc12 Chemical compound c(cc1)ccc1-[n]1c(ccc(-c2cc(-c(cccc3)c3-c(cc3)cc(c4ccccc44)c3[n]4-c3ccccc3)ccc2)c2)c2c2ccccc12 DOIMVPRXJQAQNG-UHFFFAOYSA-N 0.000 description 1
- UGDIZWSEQNHKFQ-UHFFFAOYSA-N c(cc1)ccc1-c(cc1)ccc1-[n]1c(ccc(-c(cc2)ccc2-c(cc2c3c4cccc3)ccc2[n]4-c2cc(-c3ccccc3)ccc2)c2)c2c2ccccc12 Chemical compound c(cc1)ccc1-c(cc1)ccc1-[n]1c(ccc(-c(cc2)ccc2-c(cc2c3c4cccc3)ccc2[n]4-c2cc(-c3ccccc3)ccc2)c2)c2c2ccccc12 UGDIZWSEQNHKFQ-UHFFFAOYSA-N 0.000 description 1
- ZAYDYNVXBIQORO-UHFFFAOYSA-N c(cc1)ccc1-c(cc1)ccc1-[n]1c(ccc(-c(cc2c3c4cccc3)ccc2[n]4-c2cc(-c3ccccc3)ccc2)c2)c2c2ccccc12 Chemical compound c(cc1)ccc1-c(cc1)ccc1-[n]1c(ccc(-c(cc2c3c4cccc3)ccc2[n]4-c2cc(-c3ccccc3)ccc2)c2)c2c2ccccc12 ZAYDYNVXBIQORO-UHFFFAOYSA-N 0.000 description 1
- KAXPAWTZNMSWHX-UHFFFAOYSA-N c(cc1)ccc1-c(cc1)ccc1-c1nc(-[n](c(cccc2)c2c2c3)c2cc2c3[o]c3ccccc23)nc2c1cccc2 Chemical compound c(cc1)ccc1-c(cc1)ccc1-c1nc(-[n](c(cccc2)c2c2c3)c2cc2c3[o]c3ccccc23)nc2c1cccc2 KAXPAWTZNMSWHX-UHFFFAOYSA-N 0.000 description 1
- VFRMFZQNMPCYQS-UHFFFAOYSA-N c(cc1)ccc1-c(cccc1)c1-[n](c(cccc1)c1c1c2)c1ccc2-c(cc1)cc(c2ccccc22)c1[n]2-c(cccc1)c1-c1ccccc1 Chemical compound c(cc1)ccc1-c(cccc1)c1-[n](c(cccc1)c1c1c2)c1ccc2-c(cc1)cc(c2ccccc22)c1[n]2-c(cccc1)c1-c1ccccc1 VFRMFZQNMPCYQS-UHFFFAOYSA-N 0.000 description 1
- HREDPPUIDPDCKU-UHFFFAOYSA-N c(cc1)ccc1-c(cccc1)c1-c1ccccc1Sc(cc1)ccc1-c1cccc(-[n](c(cccc2)c2c2c3)c2ccc3-c(cc2)cc(c3ccccc33)c2[n]3-c2ccccc2)c1 Chemical compound c(cc1)ccc1-c(cccc1)c1-c1ccccc1Sc(cc1)ccc1-c1cccc(-[n](c(cccc2)c2c2c3)c2ccc3-c(cc2)cc(c3ccccc33)c2[n]3-c2ccccc2)c1 HREDPPUIDPDCKU-UHFFFAOYSA-N 0.000 description 1
- XLVHDINNPFGBQV-UHFFFAOYSA-N c(cc1)ccc1-c1c2[o]c(c(c3ccccc33)c(cc4)[n]3-c(cc3)ccc3-c(cc3)ccc3N(c3ccccc3)c3ccccc3)c4c2ccc1 Chemical compound c(cc1)ccc1-c1c2[o]c(c(c3ccccc33)c(cc4)[n]3-c(cc3)ccc3-c(cc3)ccc3N(c3ccccc3)c3ccccc3)c4c2ccc1 XLVHDINNPFGBQV-UHFFFAOYSA-N 0.000 description 1
- NVMWZVNKKBWYOX-UHFFFAOYSA-N c(cc1)ccc1-c1cc(-[n](c(cccc2)c2c2c3)c2ccc3-c(cc2c3c4cccc3)ccc2[n]4-c(cccc2)c2-c2ccccc2)ccc1 Chemical compound c(cc1)ccc1-c1cc(-[n](c(cccc2)c2c2c3)c2ccc3-c(cc2c3c4cccc3)ccc2[n]4-c(cccc2)c2-c2ccccc2)ccc1 NVMWZVNKKBWYOX-UHFFFAOYSA-N 0.000 description 1
- ANEHHBGOHROACA-UHFFFAOYSA-N c(cc1)ccc1-c1ccc(c(ccc(-c2ccc(c(cccc3)c3[n]3-c4cccc5ccccc45)c3c2)c2)c2[n]2-c3ccccc3)c2c1 Chemical compound c(cc1)ccc1-c1ccc(c(ccc(-c2ccc(c(cccc3)c3[n]3-c4cccc5ccccc45)c3c2)c2)c2[n]2-c3ccccc3)c2c1 ANEHHBGOHROACA-UHFFFAOYSA-N 0.000 description 1
- LIYMDLMCOKUGMJ-UHFFFAOYSA-N c(cc1)ccc1-c1cccc(-[n]2c(ccc(-c(cc3)ccc3-[n]3c4ccccc4c4c3cccc4)c3)c3c3ccccc23)c1 Chemical compound c(cc1)ccc1-c1cccc(-[n]2c(ccc(-c(cc3)ccc3-[n]3c4ccccc4c4c3cccc4)c3)c3c3ccccc23)c1 LIYMDLMCOKUGMJ-UHFFFAOYSA-N 0.000 description 1
- ZROHZHLWHQFJKA-UHFFFAOYSA-N c(cc1)ccc1-c1cccc(-[n]2c(ccc(-c(cc3)ccc3-c(cc3c4c5cccc4)ccc3[n]5-c3cc(-c4cccc(S(c5ccccc5)(c5ccccc5)c5ccccc5)c4)ccc3)c3)c3c3ccccc23)c1 Chemical compound c(cc1)ccc1-c1cccc(-[n]2c(ccc(-c(cc3)ccc3-c(cc3c4c5cccc4)ccc3[n]5-c3cc(-c4cccc(S(c5ccccc5)(c5ccccc5)c5ccccc5)c4)ccc3)c3)c3c3ccccc23)c1 ZROHZHLWHQFJKA-UHFFFAOYSA-N 0.000 description 1
- UCXYUAVELDXPPK-UHFFFAOYSA-N c(cc1)ccc1-c1cccc(-[n]2c(ccc(-c(cc3)ccc3-c3ccc4[nH]c5ccccc5c4c3)c3)c3c3ccccc23)c1 Chemical compound c(cc1)ccc1-c1cccc(-[n]2c(ccc(-c(cc3)ccc3-c3ccc4[nH]c5ccccc5c4c3)c3)c3c3ccccc23)c1 UCXYUAVELDXPPK-UHFFFAOYSA-N 0.000 description 1
- ZUOUZKKEUPVFJK-UHFFFAOYSA-N c(cc1)ccc1-c1ccccc1 Chemical compound c(cc1)ccc1-c1ccccc1 ZUOUZKKEUPVFJK-UHFFFAOYSA-N 0.000 description 1
- ZMOYVYMEPYQXND-UHFFFAOYSA-N c(cc1)ccc1-c1nc(-c2cccc(-[n]3c(c4c(cc5)c(cccc6)c6[o]4)c5c4ccccc34)c2)nc2ccccc12 Chemical compound c(cc1)ccc1-c1nc(-c2cccc(-[n]3c(c4c(cc5)c(cccc6)c6[o]4)c5c4ccccc34)c2)nc2ccccc12 ZMOYVYMEPYQXND-UHFFFAOYSA-N 0.000 description 1
- WCFPDWGCGAHDES-UHFFFAOYSA-N c(cc1)ccc1C1=NC(c2cccc(-[n]3c(cc(c4ccccc4[o]4)c4c4)c4c4ccccc34)c2)Nc2ccccc12 Chemical compound c(cc1)ccc1C1=NC(c2cccc(-[n]3c(cc(c4ccccc4[o]4)c4c4)c4c4ccccc34)c2)Nc2ccccc12 WCFPDWGCGAHDES-UHFFFAOYSA-N 0.000 description 1
- GWXMDLWAMBFZLD-UHFFFAOYSA-N c(cc1)ccc1S(c1ccccc1)(c1ccccc1)c1cc(-c2cccc(-[n](c(cccc3)c3c3c4)c3ccc4-c(cc3)cc(c4ccccc44)c3[n]4-c3ccccc3)c2)ccc1 Chemical compound c(cc1)ccc1S(c1ccccc1)(c1ccccc1)c1cc(-c2cccc(-[n](c(cccc3)c3c3c4)c3ccc4-c(cc3)cc(c4ccccc44)c3[n]4-c3ccccc3)c2)ccc1 GWXMDLWAMBFZLD-UHFFFAOYSA-N 0.000 description 1
- XHXNLNMGVBMIQF-UHFFFAOYSA-O c1ccc(C2N=C(c(cc3)ccc3-[n]3c4c5[o]c6ccccc6c5ccc4c4c3cccc4)N=C(c3ccccc3)[NH2+]2)cc1 Chemical compound c1ccc(C2N=C(c(cc3)ccc3-[n]3c4c5[o]c6ccccc6c5ccc4c4c3cccc4)N=C(c3ccccc3)[NH2+]2)cc1 XHXNLNMGVBMIQF-UHFFFAOYSA-O 0.000 description 1
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- H10K85/633—Amine compounds having at least two aryl rest on at least one amine-nitrogen atom, e.g. triphenylamine comprising polycyclic condensed aromatic hydrocarbons as substituents on the nitrogen atom
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- H10—SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
- H10K—ORGANIC ELECTRIC SOLID-STATE DEVICES
- H10K85/00—Organic materials used in the body or electrodes of devices covered by this subclass
- H10K85/60—Organic compounds having low molecular weight
- H10K85/631—Amine compounds having at least two aryl rest on at least one amine-nitrogen atom, e.g. triphenylamine
- H10K85/636—Amine compounds having at least two aryl rest on at least one amine-nitrogen atom, e.g. triphenylamine comprising heteroaromatic hydrocarbons as substituents on the nitrogen atom
Definitions
- the present invention relates to an organic electroluminescent device.
- An electroluminescent (EL) device is a self-light-emitting device which has advantages in that it provides a wider viewing angle, a greater contrast ratio, and a faster response time.
- An organic EL device was first developed by Eastman Kodak, by using small aromatic diamine molecules and aluminum complexes as materials to form a light-emitting layer [Appl. Phys. Lett. 51, 913, 1987].
- the organic EL device converts electric energy into light when electricity is applied to an organic light-emitting material(s).
- the organic EL device has a structure comprising an anode, a cathode, and an organic layer disposed between the anode and the cathode.
- the organic layer of the organic EL device comprises a hole injection layer, a hole transport layer, an electron blocking layer, a light-emitting layer, an electron buffering layer, a hole blocking layer, an electron transport layer, an electron injection layer, etc.
- materials for forming the organic layer can be classified as a hole injection material, a hole transport material, an electron blocking material, a light-emitting material, an electron buffering material, a hole blocking material, an electron transport material, an electron injection material, etc.
- a voltage is applied to the organic EL device, holes and electrons are injected from an anode and a cathode, respectively, to the light-emitting layer.
- Excitons having high energy are formed by recombinations between the holes and the electrons. The energy of excitons puts the light-emitting organic compound in an excited state, and the decay of the excited state results in a relaxation of the energy level into a ground state, accompanied by light-emission.
- the most important factor determining luminous efficiency in the organic EL device is light-emitting materials.
- the light-emitting material needs to have high quantum efficiency, high electron mobility, and high hole mobility.
- the light-emitting layer formed by the light-emitting material needs to be uniform and stable.
- the light-emitting materials can be classified as a blue-, green-, or red-emitting material, and a yellow- or orange-emitting material can be additionally included therein.
- the light-emitting materials can be classified as a host material and a dopant material. Recently, the development of an organic EL device providing high efficiency and long lifespan is an urgent issue.
- the host material acts as a solvent in a solid state and transfers energy, and thus needs to have high purity and a molecular weight appropriate for vacuum deposition. Furthermore, the host material needs to have high glass transition temperature and high thermal degradation temperature to achieve thermal stability; high electro-chemical stability to achieve long lifespan; easiness of forming amorphous thin film; good adhesion to materials of adjacent layers; and non-migration to other layers.
- the light-emitting material may be used as a mixture of a host and a dopant.
- devices showing good electroluminescent characteristics have a structure comprising a light-emitting layer in which a dopant is doped into a host.
- efficiency and lifespan of the device are highly affected by the host material, and thus selection of the host material is important.
- the object of the present invention is to provide an organic electroluminescent device showing high efficiency and long lifespan.
- an organic electroluminescent device comprising an anode, a cathode, and an organic layer between the anode and the cathode, wherein the organic layer comprises one or more light-emitting layers and one or more hole transport layers; at least one of the one or more light-emitting layers comprises one or more dopant compounds and two or more host compounds; a first host compound of the host compounds is represented by the following formula 1; a second host compound is represented by the following formula 2; and at least one of the one or more hole transport layers comprises the compound represented by the following formula 3:
- a 1 and A 2 each independently, represent a substituted or unsubstituted (C6-C30)aryl, provided that a nitrogen-containing heteroaryl is excluded from the substituent of A 1 and A 2 ;
- L 1 represents a single bond or a substituted or unsubstituted (C6-C30)arylene
- X 1 to X 16 each independently, represent hydrogen, deuterium, a halogen, a cyano, a substituted or unsubstituted (C1-C30)alkyl, a substituted or unsubstituted (C2-C30)alkenyl, a substituted or unsubstituted (C2-C30)alkynyl, a substituted or unsubstituted (C3-C30)cycloalkyl, a substituted or unsubstituted (C6-C60)aryl, a substituted or unsubstituted 3- to 30-membered heteroaryl, a substituted or unsubstituted tri(C1-C30)alkylsilyl, a substituted or unsubstituted tri(C6-C30)arylsilyl, a substituted or unsubstituted di(C1-C30)alkyl(C6-C30)arylsilyl, a substituted or un
- Ma represents a substituted or unsubstituted nitrogen-containing 5- to 11-membered heteroaryl
- La represents a single bond, or a substituted or unsubstituted (C6-C30)arylene
- Xa to Xh each independently, represent hydrogen, deuterium, a halogen, a cyano, a substituted or unsubstituted (C1-C30)alkyl, a substituted or unsubstituted (C2-C30)alkenyl, a substituted or unsubstituted (C2-C30)alkynyl, a substituted or unsubstituted (C3-C30)cycloalkyl, a substituted or unsubstituted (C6-C60)aryl, a substituted or unsubstituted 3- to 30-membered heteroaryl, a substituted or unsubstituted tri(C1-C30)alkylsilyl, a substituted or unsubstituted tri(C6-C30)arylsilyl, a substituted or unsubstituted di(C1-C30)alkyl(C6-C30)arylsilyl, a substituted or un
- a 3 represents a substituted or unsubstituted (C6-C30)aryl
- L 2 represents a single bond, or a substituted or unsubstituted (C6-C30)arylene
- l and m each independently, represent an integer of 0 or 1, l+m is 1 or 2;
- R 1 to R 4 each independently, represent hydrogen, deuterium, a halogen, a cyano, a substituted or unsubstituted (C1-C30)alkyl, a substituted or unsubstituted (C2-C30)alkenyl, a substituted or unsubstituted (C2-C30)alkynyl, a substituted or unsubstituted (C3-C30)cycloalkyl, a substituted or unsubstituted (C6-C60)aryl, a substituted or unsubstituted 3- to 30-membered heteroaryl, a substituted or unsubstituted tri(C1-C30)alkylsilyl, a substituted or unsubstituted tri(C6-C30)arylsilyl, a substituted or unsubstituted di(C1-C30)alkyl(C6-C30)arylsilyl, a substituted or unsubsti
- r 1 to r 4 each independently, represent an integer of 1 to 4.
- the heteroaryl contains at least one hetero atom selected from B, N, O, S, Si, and P.
- an organic electroluminescent device having high efficiency and long lifespan is provided.
- the organic electroluminescent device of the present invention can be used for the manufacture of a display system or a lighting system.
- the details of the organic electroluminescent device of the present invention are as follows.
- the compound of formula 1 may be represented by any one of the following formulae 4, 5, 6, and 7.
- a 1 , A 2 , L 1 and X 1 to X 16 are as defined in formula 1 above.
- a 1 and A 2 each independently, represent a substituted or unsubstituted (C6-C30)aryl.
- a 1 and A 2 each independently, may represent preferably, a substituted or unsubstituted (C6-C18)aryl; and more preferably, a (C6-C18)aryl unsubstituted or substituted with a cyano, a halogen, a (C1-C6)alkyl, a (C6-C12)aryl, or a tri(C6-C12)arylsilyl.
- a 1 and A 2 may be selected from the group consisting of a substituted or unsubstituted phenyl, a substituted or unsubstituted biphenyl, a substituted or unsubstituted terphenyl, a substituted or unsubstituted naphthyl, a substituted or unsubstituted fluorenyl, a substituted or unsubstituted benzofluorenyl, a substituted or unsubstituted phenanthrenyl, a substituted or unsubstituted anthracenyl, a substituted or unsubstituted indenyl, a substituted or unsubstituted triphenylenyl, a substituted or unsubstituted pyrenyl, a substituted or unsubstituted tetracenyl, a substituted or unsubstituted perylenyl, a substituted or unsubstituted, a
- the substituents of the substituted phenyl, etc. may be a cyano, a halogen, a (C1-C6)alkyl, a (C6-C12)aryl, or a tri(C6-C12)arylsilyl.
- a 1 and A 2 may be the same or different.
- X 1 to X 16 each independently, represent hydrogen, deuterium, a halogen, a cyano, a substituted or unsubstituted (C1-C30)alkyl, a substituted or unsubstituted (C2-C30)alkenyl, a substituted or unsubstituted (C2-C30)alkynyl, a substituted or unsubstituted (C3-C30)cycloalkyl, a substituted or unsubstituted (C6-C60)aryl, a substituted or unsubstituted 3- to 30-membered heteroaryl, a substituted or unsubstituted tri(C1-C30)alkylsilyl, a substituted or unsubstituted tri(C6-C30)arylsilyl, a substituted or unsubstituted di(C1-C30)alkyl(C6-C30)arylsilyl, a substituted or un
- X 1 to X 16 each independently, may represent hydrogen, a cyano, a substituted or unsubstituted (C1-C10)alkyl, a substituted or unsubstituted (C6-C20)aryl, a substituted or unsubstituted 5- to 20-membered heteroaryl, or a substituted or unsubstituted tri(C6-C12)arylsilyl.
- X 1 to X 16 may represent hydrogen; a cyano; a (C1-C10)alkyl; a (C6-C20)aryl unsubstituted or substituted with a cyano, a (C1-C10)alkyl, or a tri(C6-C12)arylsilyl; a 5- to 20-membered heteroaryl unsubstituted or substituted with a (C1-C10)alkyl, a (C6-C15)aryl or a tri(C6-C12)arylsilyl; or a tri(C6-C12)arylsilyl unsubstituted or substituted with a (C1-C10)alkyl.
- X 1 to X 16 each independently, may represent hydrogen; a cyano; a (C1-C6)alkyl; phenyl, biphenyl, terphenyl, or naphthyl, unsubstituted or substituted with a cyano, a (C1-C6)alkyl or triphenylsilyl; dibenzothiophene or dibenzofuran, unsubstituted or substituted with a (C1-C6)alkyl, phenyl, biphenyl, naphthyl, or triphenylsilyl; or triphenylsilyl unsubstituted or substituted with a (C1-C6)alkyl.
- L 1 represents a single bond, or a substituted or unsubstituted (C6-C30)arylene.
- L 1 may represent a single bond, or a substituted or unsubstituted (C6-C15)arylene.
- L 1 may represent one selected from the following formulae 8 to 20.
- Xi to Xp each independently, represent hydrogen, deuterium, a halogen, a cyano, a substituted or unsubstituted (C1-C30)alkyl, a substituted or unsubstituted (C2-C30)alkenyl, a substituted or unsubstituted (C2-C30)alkynyl, a substituted or unsubstituted (C3-C30)cycloalkyl, a substituted or unsubstituted (C6-C60)aryl, a substituted or unsubstituted 3- to 30-membered heteroaryl, a substituted or unsubstituted tri(C1-C30)alkylsilyl, a substituted or unsubstituted tri(C6-C30)arylsilyl, a substituted or unsubstituted di(C1-C30)alkyl(C6-C30)arylsilyl, a substituted or un
- Xi to Xp each independently, may represent preferably, hydrogen, a halogen, a cyano, a (C1-C10)alkyl, a (C3-C20)cycloalkyl, a (C6-C12)aryl, a (C1-C6)alkyldi(C6-C12)arylsilyl, or a tri(C6-C12)arylsilyl; and more preferably, hydrogen, a cyano, a (C1-C6)alkyl, or a tri(C6-C12)arylsilyl.
- Ma represents a substituted or unsubstituted nitrogen-containing 5- to 11-membered heteroaryl.
- Ma may represent preferably, a substituted or unsubstituted nitrogen-containing 6- to 10-membered heteroaryl; and more preferably, a nitrogen-containing 6- to 10-membered heteroaryl substituted with an unsubstituted (C6-C18)aryl, a (C6-C12)aryl substituted with a cyano, a (C6-C12)aryl substituted with a (C1-C6)alkyl, a (C6-C12)aryl substituted with a tri(C6-C12)arylsilyl, or a 6- to 15-membered heteroaryl.
- Ma may represent a substituted or unsubstituted monocyclic ring-type heteroaryl selected from the group consisting of a substituted or unsubstituted pyrrolyl, a substituted or unsubstituted imidazolyl, a substituted or unsubstituted pyrazolyl, a substituted or unsubstituted triazinyl, a substituted or unsubstituted tetrazinyl, a substituted or unsubstituted triazolyl, a substituted or unsubstituted tetrazolyl, a substituted or unsubstituted pyridyl, a substituted or unsubstituted pyrazinyl, a substituted or unsubstituted pyrimidinyl, and a substituted or unsubstituted pyridazinyl, or a substituted or unsubstituted fused ring-type heteroaryl selected from the group consist
- Ma may represent a substituted or unsubstituted triazinyl, a substituted or unsubstituted pyrimidinyl, a substituted or unsubstituted pyridyl, a substituted or unsubstituted quinolyl, a substituted or unsubstituted isoquinolyl, a substituted or unsubstituted quinazolinyl, a substituted or unsubstituted naphthyridinyl, or a substituted or unsubstituted quinoxalinyl.
- the substituents for the substituted pyrrolyl, etc., of Ma may be a (C6-C18)aryl, a (C6-C12)aryl substituted with a cyano, a (C6-C12)aryl substituted with a (C1-C6)alkyl, a (C6-C12)aryl substituted with a tri(C6-C12)arylsilyl, a cyano, a (C1-C6)alkyl, a tri(C6-C12)arylsilyl, or a 6- to 15-membered heteroaryl; and specifically, phenyl, biphenyl, terphenyl, naphthyl, phenylnaphthyl, naphthylphenyl, phenanthrenyl, anthracenyl, dibenzothiophenyl, or dibenzofuranyl, unsubstituted or substituted with a cyano, a (C
- La represents a single bond, or a substituted or unsubstituted (C6-C30)arylene; and preferably, a single bond, or a substituted or unsubstituted (C6-C12)arylene.
- La may represent a single bond, or any one of formulae 8 to 20.
- Xa to Xh each independently, represent hydrogen, deuterium, a halogen, a cyano, a substituted or unsubstituted (C1-C30)alkyl, a substituted or unsubstituted (C2-C30)alkenyl, a substituted or unsubstituted (C2-C30)alkynyl, a substituted or unsubstituted (C3-C30)cycloalkyl, a substituted or unsubstituted (C6-C60)aryl, a substituted or unsubstituted 3- to 30-membered heteroaryl, a substituted or unsubstituted tri(C1-C30)alkylsilyl, a substituted or unsubstituted tri(C6-C30)arylsilyl, a substituted or unsubstituted di(C1-C30)alkyl(C6-C30)arylsilyl, a substituted or un
- Xa to Xh each independently, may represent hydrogen, a cyano, a substituted or unsubstituted (C6-C15)aryl, a substituted or unsubstituted 10- to 20-membered heteroaryl, or a substituted or unsubstituted tri(C6-C10)arylsilyl, or may be linked to an adjacent substituent(s) to form a substituted or unsubstituted (C6-C20) , mono- or polycyclic, aromatic ring, whose carbon atom(s) may be replaced with at least one hetero atom selected from nitrogen, oxygen, and sulfur.
- Xa to Xh each independently, may represent hydrogen, a cyano, a (C6-C15)aryl unsubstituted or substituted with a tri(C6-C10)arylsily, or a 10- to 20-membered heteroaryl unsubstituted or substituted with a (C6-C12)aryl, or may be linked to an adjacent substituent(s) to form a substituted or unsubstituted benzene, a substituted or unsubstituted indole, a substituted or unsubstituted benzindole, a substituted or unsubstituted indene, a substituted or unsubstituted benzofuran, or a substituted or unsubstituted benzothiophene.
- a 3 represents a substituted or unsubstituted (C6-C30)aryl; preferably, a substituted or unsubstituted (C6-C18)aryl; and more preferably, a (C6-C18)aryl unsubstituted or substituted with a cyano, a (C6-C12)aryl, a 5- to 15-membered heteroaryl, or a tri(C6-C12)arylsilyl.
- a 3 may be selected from the group consisting of a substituted or unsubstituted phenyl, a substituted or unsubstituted biphenyl, a substituted or unsubstituted terphenyl, a substituted or unsubstituted naphthyl, and a substituted or unsubstituted triphenylenyl.
- the substituent of the substituted phenyl etc. may be a cyano, a (C6-C12)aryl, a 5- to 15-membered heteroaryl, or a tri(C6-C12)arylsilyl.
- L 2 represents a single bond, or a substituted or unsubstituted (C6-C30)arylene; and preferably, a single bond, or a substituted or unsubstituted (C6-C12)arylene.
- R 1 to R 4 each independently, represent hydrogen, deuterium, a halogen, a cyano, a substituted or unsubstituted (C1-C30)alkyl, a substituted or unsubstituted (C2-C30)alkenyl, a substituted or unsubstituted (C2-C30)alkynyl, a substituted or unsubstituted (C3-C30)cycloalkyl, a substituted or unsubstituted (C6-C60)aryl, a substituted or unsubstituted 3- to 30-membered heteroaryl, a substituted or unsubstituted tri(C1-C30)alkylsilyl, a substituted or unsubstituted tri(C6-C30)arylsilyl, a substituted or unsubstituted di(C1-C30)alkyl(C6-C30)arylsilyl, a substituted or unsubsti
- R 1 to R 4 each independently, may represent hydrogen, a cyano, a substituted or unsubstituted (C6-C18)aryl, a substituted or unsubstituted 10- to 20-membered heteroaryl, or a substituted or unsubstituted tri(C6-C10)arylsilyl; or may be linked to an adjacent substituent(s) to form a substituted or unsubstituted (C6-C21), mono- or polycyclic, aromatic ring which may form a spiro structure, and the carbon atom(s) of the ring may be replaced with at least one hetero atom selected from nitrogen, oxygen, and sulfur.
- R 1 to R 4 each independently, may represent hydrogen, a cyano, a (C6-C18)aryl unsubstituted or substituted with a (C1-C6)alkyl, or an unsubstituted 10- to 20-membered heteroaryl; or may be linked to an adjacent substituent(s) to form a substituted or unsubstituted benzene, a substituted or unsubstituted indole, a substituted or unsubstituted indene, a substituted or unsubstituted benzindene, a substituted or unsubstituted benzofuran, a substituted or unsubstituted benzothiophene, a substituted or unsubstituted spiro[cyclopentane-indene], a substituted or unsubstituted spiro[cyclohexane-indene], or a substituted or unsubstituted spiro[cyclo
- (C1-C30)alkyl indicates a linear or branched alkyl chain having 1 to 30, preferably 1 to 20, and more preferably 1 to 10 carbon atoms consistuting the chain, and includes methyl, ethyl, n-propyl, isopropyl, n-butyl, isobutyl, tert-butyl, etc.
- (C2-C30) alkenyl indicates a linear or branched alkenyl chain having 2 to 30, preferably 2 to 20, and more preferably 2 to 10 carbon atoms consistuting the chain and includes vinyl, 1-propenyl, 2-propenyl, 1-butenyl, 2-butenyl, 3-butenyl, 2-methylbut-2-enyl, etc.
- (C2-C30)alkynyl indicates a linear or branched alkynyl chain having 2 to 30, preferably 2 to 20, and more preferably 2 to 10 carbon atoms consistuting the chain and includes ethynyl, 1-propynyl, 2-propynyl, 1-butynyl, 2-butynyl, 3-butynyl, 1-methylpent-2-ynyl, etc.
- “(C3-C30)cycloalkyl” indicates a mono- or polycyclic hydrocarbon having 3 to 30, preferably 3 to 20, and more preferably 3 to 7 ring backbone carbon atoms and includes cyclopropyl, cyclobutyl, cyclopentyl, cyclohexyl, etc.
- “3- to 7-membered heterocycloalkyl” indicates a cycloalkyl having 3 to 7, preferably 5 to 7 ring backbone atoms including at least one hetero atom selected from B, N, O, S, Si, and P, preferably O, S, and N, and includes tetrahydrofuran, pyrrolidine, thiolan, tetrahydropyran,
- “(C6-C30)aryl(ene)” indicates a monocyclic or fused ring-based radical derived from an aromatic hydrocarbon and having 6 to 30, preferably 6 to 20, and more preferably 6 to 15 ring backbone carbon atoms, and includes phenyl, biphenyl, terphenyl, naphthyl, binaphthyl, phenylnaphthyl, naphthylphenyl, fluorenyl, phenylfluorenyl, benzofluorenyl, dibenzofluorenyl, phen
- “3- to 30-membered heteroaryl” indicates an aryl group having 3 to 30 ring backbone atoms including at least one, preferably 1 to 4, hetero atom selected from the group consisting of B, N, O, S, Si, and P; may be a monocyclic ring, or a fused ring condensed with at least one benzene ring; may be partially saturated; may be one formed by linking at least one heteroaryl or aryl group to a heteroaryl group via a single bond(s); and includes a monocyclic ring-type heteroaryl such as furyl, thiophenyl, pyrrolyl, imidazolyl, pyrazolyl, thiazolyl, thiadiazolyl, isothiazolyl, isoxazolyl, oxazolyl, oxadiazolyl, triazinyl, tetrazinyl, triazolyl, tetrazolyl, furazanyl, pyridy
- the “nitrogen-containing 5- to 30-membered heteroaryl” indicates a heteroaryl group having 5 to 30, preferably 5 to 20, and more preferably 5 to 15 ring backbone atoms including at least one, preferably 1 to 4, nitrogen as the hetero atom; may be a monocyclic ring, or a fused ring condensed with at least one benzene ring; may be partially saturated; may be one formed by linking at least one heteroaryl or aryl group to a heteroaryl group via a single bond(s); and includes a monocyclic ring-type heteroaryl such as pyrrolyl, imidazolyl, pyrazolyl, triazinyl, tetrazinyl, triazolyl, tetrazolyl, pyridyl, pyrazinyl, pyrimidinyl, pyridazinyl, etc., and a fused ring-type heteroaryl such as benzoimidazolyl, isoindolyl
- substituted in the expression, “substituted or unsubstituted,” means that a hydrogen atom in a certain functional group is replaced with another atom or group, i.e. a substituent.
- triarylsilyl of X 1 to X 16 in formula 1 is preferably triphenylsilyl.
- the first host compound represented by formula 1 includes the following, but is not limited thereto.
- the second host compound represented by formula 2 includes the following, but is not limited thereto:
- the hole transport compound represented by formula 3 includes the following, but is not limited thereto:
- the organic electroluminescent device of the present invention comprises an anode, a cathode, and an organic layer between the anode and the cathode, wherein the organic layer comprises one or more light-emitting layers and one or more hole transport layers; at least one of the one or more light-emitting layers comprises one or more dopant compounds and two or more host compounds; a first host compound of the host compounds is represented by formula 1; a second host compound is represented by formula 2; and at least one of the one or more hole transport layers comprises the compound represented by formula 3.
- the light-emitting layer indicates a layer from which light is emitted. It is preferable that a doping amount of the dopant compound is less than 20 wt% based on the total amount of the host compound and the dopant compound in a light-emitting layer.
- the weight ratio in the light-emitting layer between the first host material and the second host material may be in the range of 1:99 to 99:1.
- the organic layer may comprise at least one layer selected from a hole injection layer, an electron transport layer, an electron injection layer, an electron buffering layer, an interlayer, a hole blocking layer, and an electron blocking layer.
- the dopant to be comprised in the organic electroluminescent device of the present invention is preferably at least one phosphorescent dopant.
- the phosphorescent dopant material for the organic electroluminescent device of the present invention is not limited, but may be preferably selected from metallated complex compounds of iridium (Ir), osmium (Os), copper (Cu) or platinum (Pt), more preferably selected from ortho-metallated complex compounds of iridium (Ir), osmium (Os), copper (Cu) or platinum (Pt), and even more preferably ortho-metallated iridium complex compounds.
- the phosphorescent dopant may be selected from the group consisting of compounds represented by the following formulae 101 to 103.
- L is selected from the following structures:
- R 100 represents hydrogen, a substituted or unsubstituted (C1-C30)alkyl, or a substituted or unsubstituted (C3-C30)cycloalkyl;
- R 101 to R 109 , and R 111 to R 123 each independently, represent hydrogen, deuterium, a halogen, a (C1-C30)alkyl unsubstituted or substituted with deuterium or a halogen(s), a substituted or unsubstituted (C6-C30)aryl, a cyano, a substituted or unsubstituted (C1-C30)alkoxy, or a substituted or unsubstituted (C3-C30)cycloalkyl; adjacent substituents of R 106 to R 109 may be linked to each other to form a substituted or unsubstituted fused ring, e.g., fluorene unsubstituted or substituted with alkyl, dibenzothiophene unsubstituted or substituted with alkyl, or dibenzofuran unsubstituted or substituted with alkyl; adjacent substituents of R 120 to R 123 may
- R 124 to R 127 each independently, represent hydrogen, deuterium, a halogen, a substituted or unsubstituted (C1-C30)alkyl, or a substituted or unsubstituted (C6-C30)aryl; and adjacent substituents of R 124 to R 127 may be linked to each other to form a substituted or unsubstituted fused ring, e.g., fluorene unsubstituted or substituted with alkyl, dibenzothiophene unsubstituted or substituted with alkyl, or dibenzofuran unsubstituted or substituted with alkyl;
- R 201 to R 211 each independently, represent hydrogen, deuterium, a halogen, a (C1-C30)alkyl unsubstituted or substituted with deuterium or a halogen(s), a substituted or unsubstituted (C3-C30)cycloalkyl, or a substituted or unsubstituted (C6-C30)aryl; and adjacent substituents of R 208 to R 211 may be linked to each other to form a substituted or unsubstituted fused ring, e.g., fluorene unsubstituted or substituted with alkyl, dibenzothiophene unsubstituted or substituted with alkyl, or dibenzofuran unsubstituted or substituted with alkyl;
- r and s each independently, represent an integer of 1 to 3; when r or s is an integer of 2 or more, each of R 100 may be the same or different; and
- e represents an integer of 1 to 3.
- the phosphorescent dopant material includes the following:
- the organic layer may further comprise at least one compound selected from the group consisting of arylamine-based compounds and styrylarylamine-based compounds.
- the organic layer may further comprise at least one metal selected from the group consisting of metals of Group 1, metals of Group 2, transition metals of the 4 th period, transition metals of the 5 th period, lanthanides and organic metals of the d-transition elements of the Periodic Table, or at least one complex compound comprising the metal.
- a surface layer may be placed on an inner surface(s) of one or both electrode(s), selected from a chalcogenide layer, a metal halide layer and a metal oxide layer.
- a chalcogenide (includes oxides) layer of silicon or aluminum is preferably placed on an anode surface of an electroluminescent medium layer
- a metal halide layer or a metal oxide layer is preferably placed on a cathode surface of an electroluminescent medium layer.
- the chalcogenide includes SiO X (1 ⁇ X ⁇ 2), AlO X (1 ⁇ X ⁇ 1.5), SiON, SiAlON, etc.;
- the metal halide includes LiF, MgF 2 , CaF 2 , a rare earth metal fluoride, etc.; and the metal oxide includes Cs 2 O, Li 2 O, MgO, SrO, BaO, CaO, etc.
- a hole injection layer In addition to the hole transport layer, a hole injection layer, an electron blocking layer, or a combination thereof may be disposed between the anode and the light-emitting layer.
- the hole injection layer may be composed of two or more layers in order to lower an energy barrier for injecting holes from the anode to a hole transport layer or an electron blocking layer (or a voltage for injecting a hole). Each of the layers may comprise two or more compounds.
- the electron blocking layer may be composed of two or more layers.
- An electron buffering layer, a hole blocking layer, an electron transport layer, an electron injection layer, or a combination thereof may be disposed between the light-emitting layer and the cathode.
- the electron buffering layer may be composed of two or more layers in order to control the electron injection and improve characteristics of interface between the light-emitting layer and the electron injection layer.
- Each of the layers may comprise two or more compounds.
- the hole blocking layer or electron transport layer may be composed of two or more layers, and each of the layers may comprise two or more compounds.
- a mixed region of an electron transport compound and a reductive dopant, or a mixed region of a hole transport compound and an oxidative dopant may be placed on at least one surface of a pair of electrodes.
- the electron transport compound is reduced to an anion, and thus it becomes easier to inject and transport electrons from the mixed region to an electroluminescent medium.
- the hole transport compound is oxidized to a cation, and thus it becomes easier to inject and transport holes from the mixed region to the electroluminescent medium.
- the oxidative dopant includes various Lewis acids and acceptor compounds
- the reductive dopant includes alkali metals, alkali metal compounds, alkaline earth metals, rare-earth metals, and mixtures thereof.
- a reductive dopant layer may be employed as a charge generating layer to prepare an electroluminescent device having two or more light-emitting layers and emitting white light.
- each layer of the organic electroluminescent device of the present invention dry film-forming methods such as vacuum evaporation, sputtering, plasma and ion plating methods, or wet film-forming methods such as inkjet printing, nozzle printing, slot coating, spin coating, dip coating, and flow coating methods can be used.
- dry film-forming methods such as vacuum evaporation, sputtering, plasma and ion plating methods, or wet film-forming methods such as inkjet printing, nozzle printing, slot coating, spin coating, dip coating, and flow coating methods can be used.
- wet film-forming methods such as inkjet printing, nozzle printing, slot coating, spin coating, dip coating, and flow coating methods.
- a thin film can be formed by dissolving or diffusing materials forming each layer into any suitable solvent such as ethanol, chloroform, tetrahydrofuran, dioxane, etc.
- the solvent can be any solvent where the materials forming each layer can be dissolved or diffused, and where there are no problems in film-formation capability.
- two or more host compounds for a light-emitting layer may be co-evaporated or mixture-evaporated.
- a co-evaporation indicates a process for two or more materials to be deposited as a mixture, by introducing each of the two or more materials into respective crucible cells, and applying electric current to the cells for each of the materials to be evaporated.
- a mixture-evaporation indicates a process for two or more materials to be deposited as a mixture, by mixing the two or more materials in one crucible cell before the deposition, and applying electric current to the cell for the mixture to be evaporated.
- the organic electroluminescent device of the present invention can be used for the manufacture of a display system or a lighting system.
- OLED organic electroluminescent device
- a transparent electrode indium tin oxide (ITO) thin film (10 ⁇ /sq) on a glass substrate for OLED (Geomatec) was subjected to an ultrasonic washing with acetone, ethanol, and distilled water sequentially, and was then stored in isopropanol.
- the ITO substrate was then mounted on a substrate holder of a vacuum vapor depositing apparatus.
- N 4 ,N 4' -diphenyl-N 4 ,N 4' -bis(9-phenyl-9H-carbazol-3-yl)-[1,1'-biphenyl]-4,4'-diamine (compound HI-1) was introduced into a cell of the vacuum vapor depositing apparatus, and then the pressure in the chamber of the apparatus was controlled to 10 -6 torr. Thereafter, an electric current was applied to the cell to evaporate HI-1, thereby forming a first hole injection layer having a thickness of 80 nm on the ITO substrate.
- 1,4,5,8,9,12-hexaazatriphenylene-hexacarbonitrile (compound HI-2) was then introduced into another cell of the vacuum vapor depositing apparatus, and evaporated by applying electric current to the cell, thereby forming a second hole injection layer having a thickness of 3 nm on the first hole injection layer.
- N-([1,1'-biphenyl]-4-yl)-9,9-dimethyl-N-(4-(9-phenyl-9H-carbazol-3-yl)phenyl)-9H-fluoren-2-amine (compound H3-3) was introduced into one cell of the vacuum vapor depositing apparatus, and evaporated by applying electric current to the cell, thereby forming a first hole transport layer having a thickness of 10 nm on the second hole injection layer.
- a compound for a second hole transport layer shown in Table 1 below was then introduced into another cell of the vacuum vapor depositing apparatus, and evaporated by applying electric current to the cell, thereby forming a second hole transport layer having a thickness of 30 nm on the first hole transport layer.
- compounds H1-34 and H2-31 were introduced into two cells of the vacuum vapor depositing apparatus, respectively.
- D-25 was introduced into another cell as a dopant.
- the two host compounds were evaporated at the same rate of 1:1, while the dopant was evaporated at a different rate from the host compounds, so that the dopant was deposited in a doping amount of 15 wt% based on the total amount of the host and dopant to form a light-emitting layer having a thickness of 40 nm on the hole transport layer.
- HTL-A as a compound for a second hole transport layer
- OLEDs were produced in the same manner as in Device Examples 1-1 to 1-4, except that compound HTL-A shown below was used as a compound for a second hole transport layer.
- a driving voltage at 1,000 nit, luminous efficiency, CIE color coordinate, and time taken to be reduced from 100% to 97% of the luminance at 15,000 nit and a constant current (T97 lifespan) of OLEDs were measured.
- the organic electroluminescent device of the present invention has better lifespan characteristics than conventional devices by comprising a specific hole transport compound and a plurality of hosts.
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- Electroluminescent Light Sources (AREA)
Abstract
Priority Applications (5)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2017503533A JP6688781B2 (ja) | 2014-07-22 | 2015-07-22 | 有機電界発光デバイス |
| CN201580038391.9A CN106537633B (zh) | 2014-07-22 | 2015-07-22 | 有机电致发光装置 |
| US15/327,663 US20170207396A1 (en) | 2014-07-22 | 2015-07-22 | Organic electroluminescent device |
| EP15825119.9A EP3172780A4 (fr) | 2014-07-22 | 2015-07-22 | Dispositif électroluminescent organique |
| US17/532,265 US20220102644A1 (en) | 2014-07-22 | 2021-11-22 | Organic electroluminescent device |
Applications Claiming Priority (4)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| KR20140092802 | 2014-07-22 | ||
| KR10-2014-0092802 | 2014-07-22 | ||
| KR1020150102378A KR102502306B1 (ko) | 2014-07-22 | 2015-07-20 | 유기 전계 발광 소자 |
| KR10-2015-0102378 | 2015-07-20 |
Related Child Applications (2)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US15/327,663 A-371-Of-International US20170207396A1 (en) | 2014-07-22 | 2015-07-22 | Organic electroluminescent device |
| US17/532,265 Continuation US20220102644A1 (en) | 2014-07-22 | 2021-11-22 | Organic electroluminescent device |
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| Publication Number | Publication Date |
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| WO2016013875A1 true WO2016013875A1 (fr) | 2016-01-28 |
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| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/KR2015/007636 Ceased WO2016013875A1 (fr) | 2014-07-22 | 2015-07-22 | Dispositif électroluminescent organique |
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| WO2020099259A1 (fr) * | 2018-11-16 | 2020-05-22 | Cynora Gmbh | Dérivés de carbazole destinés à être utilisés dans des dispositifs optoélectroniques |
| WO2024121133A1 (fr) | 2022-12-08 | 2024-06-13 | Merck Patent Gmbh | Dispositif électronique organique et matériaux spéciaux pour dispositifs électroniques organiques |
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