[go: up one dir, main page]

Lv et al., 2020 - Google Patents

Flexible lead‐free perovskite oxide multilayer film capacitor based on (Na0. 8K0. 2) 0.5 Bi0. 5TiO3/Ba0. 5Sr0. 5 (Ti0. 97Mn0. 03) O3 for high‐performance dielectric …

Lv et al., 2020

Document ID
16877688039038244074
Author
Lv P
Yang C
Qian J
Wu H
Huang S
Cheng X
Cheng Z
Publication year
Publication venue
Advanced Energy Materials

External Links

Snippet

Flexible thin film dielectric capacitors with high energy storage density and a fast charging– discharging rate have attracted increasing attention as the development of microelectronics progresses toward flexibility and miniaturization. In this work, an all‐inorganic thin film …
Continue reading at advanced.onlinelibrary.wiley.com (other versions)

Similar Documents

Publication Publication Date Title
Lv et al. Flexible lead‐free perovskite oxide multilayer film capacitor based on (Na0. 8K0. 2) 0.5 Bi0. 5TiO3/Ba0. 5Sr0. 5 (Ti0. 97Mn0. 03) O3 for high‐performance dielectric energy storage
Yang et al. Fatigue‐free and bending‐endurable flexible Mn‐doped Na0. 5Bi0. 5TiO3‐BaTiO3‐BiFeO3 film capacitor with an ultrahigh energy storage performance
Qi et al. Superior energy‐storage capacitors with simultaneously giant energy density and efficiency using nanodomain engineered BiFeO3‐BaTiO3‐NaNbO3 lead‐free bulk ferroelectrics
Wang et al. Superparaelectric (Ba0. 95, Sr0. 05)(Zr0. 2, Ti0. 8) O3 ultracapacitors
Zheng et al. Compositionally graded KNN‐based multilayer composite with excellent piezoelectric temperature stability
Li et al. Improved energy storage properties achieved in (K, Na) NbO3‑based relaxor ferroelectric ceramics via a combinatorial optimization strategy
Qian et al. Interfacial coupling boosts giant electrocaloric effects in relaxor polymer nanocomposites: in situ characterization and phase‐field simulation
Peng et al. Phase-transition induced giant negative electrocaloric effect in a lead-free relaxor ferroelectric thin film
Bai et al. Giant field‐induced strain with low hysteresis and boosted energy storage performance under low electric field in (Bi0. 5Na0. 5) TiO3‐based grain orientation‐controlled ceramics
Ortega et al. Relaxor-ferroelectric superlattices: high energy density capacitors
Fan et al. Significantly enhanced energy storage density with superior thermal stability by optimizing Ba (Zr0. 15Ti0. 85) O3/Ba (Zr0. 35Ti0. 65) O3 multilayer structure
An et al. Sustainable nanotextured wave energy harvester based on ferroelectric fatigue‐free and flexoelectricity‐enhanced piezoelectric P (VDF‐TrFE) nanofibers with BaSrTiO3 nanoparticles
Yang et al. Flexible lead-free BFO-based dielectric capacitor with large energy density, superior thermal stability, and reliable bending endurance
Lv et al. 4-inch ternary BiFeO3–BaTiO3–SrTiO3 thin film capacitor with high energy storage performance
Xie et al. Large enhancement of the recoverable energy storage density and piezoelectric response in relaxor-ferroelectric capacitors by utilizing the seeding layers engineering
Yang et al. Flexible, temperature‐Stable, and fatigue‐endurable PbZr0. 52Ti0. 48O3 ferroelectric film for nonvolatile memory
Bin et al. Ultrahigh energy storage performance of flexible BMT‐based thin film capacitors
Zhang et al. 0.6 ST-0.4 NBT thin film with low level Mn doping as a lead-free ferroelectric capacitor with high energy storage performance
Hao et al. Energy-storage performance and electrocaloric effect in (100)-oriented Pb0. 97La0. 02 (Zr0. 95Ti0. 05) O3 antiferroelectric thick films
Zhang et al. Large enhancement of energy-storage properties of compositional graded (Pb1− xLax)(Zr0. 65Ti0. 35) O3 relaxor ferroelectric thick films
Xie et al. High–Energy‐Storage Density Capacitors of Bi (Ni 1/2 Ti 1/2) O 3–PbTiO 3 Thin Films with Good Temperature Stability
Liu et al. All‐Ceramic Flexible Piezoelectric Energy Harvester
Sun et al. Ultrahigh energy storage density in glassy ferroelectric thin films under low electric field
Zhao et al. Enhanced energy-storage performance and electrocaloric effect in compositionally graded Pb (1− 3x/2) LaxZr0. 85Ti0. 15O3 antiferroelectric thick films
Fan et al. Realization of high energy density in an ultra-wide temperature range through engineering of ferroelectric sandwich structures