Excellent thermal stability with high energy storage density in ultra-wide range of temperatures is the extremely important property of capacitors for applications in cold polar regions, extreme altitudes and high temperature regions. Here, we report on designing and preparing the BaZr0.15Ti0.85O3/BaZr0.35Ti0.65O3 (BZT15/BZT35) multilayer thin film capacitors. Under a given total thickness, the energy storage performances of the multilayer films can be optimized by controlling the number of interfaces. For the capacitor with an optimum period number N = 6, the markedly enhanced breakdown strength and large dielectric constant are achieved, which leads to a giant energy storage density (Wre) of ~83.9 J/cm3 with the efficiency (η) of ~78.4% a...
Dielectric capacitors possessing large energy storage density, high efficiency and high thermal stab...
PbZr0.35Ti0.65O3 (PZT), PbZrO3 (PZO), and PZT/PZO ferroelectric/antiferroelectric multilayer films w...
The utilization of antiferroelectric (AFE) materials is thought to be an effective approach to enhan...
The effects of interface density and total multilayer film thickness on the dielectric properties an...
The ability to work at ultralow (−90 °C) or ultrahigh (200 °C) temperature with superior energy stor...
Industry has been seeking a thin-film capacitor that can work at high temperature in a harsh environ...
A large energy storage density (ESD) of 30.4 J/cm3 and high energy efficiency of 81.7% under an elec...
Here, large-scaled flexible Ba(Zr0.35Ti0.65)O3 ferroelectric film capacitors not only exhibit ultrah...
Thin film dielectrics are the most selected materials for many power electronics owing to their inhe...
2020 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Flexible thin film dielectric capacitors with high e...
Article Copyright 2015 American Institute of Physics. This article may be downloaded for personal us...
Ultrahigh energy storage density of 52.4 J cm−3 with optimistic efficiency of 72.3% is achieved by i...
© 2020 Dielectric film capacitors with high energy density (Wrec) and high efficiency (η) as well as...
Herein, the effect of the insertion of a thin dielectric HfO2:Al2O3 (HAO) layer at different positio...
Dielectric capacitors have the highest charge/discharge speed among all electrical energy devices, b...
Dielectric capacitors possessing large energy storage density, high efficiency and high thermal stab...
PbZr0.35Ti0.65O3 (PZT), PbZrO3 (PZO), and PZT/PZO ferroelectric/antiferroelectric multilayer films w...
The utilization of antiferroelectric (AFE) materials is thought to be an effective approach to enhan...
The effects of interface density and total multilayer film thickness on the dielectric properties an...
The ability to work at ultralow (−90 °C) or ultrahigh (200 °C) temperature with superior energy stor...
Industry has been seeking a thin-film capacitor that can work at high temperature in a harsh environ...
A large energy storage density (ESD) of 30.4 J/cm3 and high energy efficiency of 81.7% under an elec...
Here, large-scaled flexible Ba(Zr0.35Ti0.65)O3 ferroelectric film capacitors not only exhibit ultrah...
Thin film dielectrics are the most selected materials for many power electronics owing to their inhe...
2020 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Flexible thin film dielectric capacitors with high e...
Article Copyright 2015 American Institute of Physics. This article may be downloaded for personal us...
Ultrahigh energy storage density of 52.4 J cm−3 with optimistic efficiency of 72.3% is achieved by i...
© 2020 Dielectric film capacitors with high energy density (Wrec) and high efficiency (η) as well as...
Herein, the effect of the insertion of a thin dielectric HfO2:Al2O3 (HAO) layer at different positio...
Dielectric capacitors have the highest charge/discharge speed among all electrical energy devices, b...
Dielectric capacitors possessing large energy storage density, high efficiency and high thermal stab...
PbZr0.35Ti0.65O3 (PZT), PbZrO3 (PZO), and PZT/PZO ferroelectric/antiferroelectric multilayer films w...
The utilization of antiferroelectric (AFE) materials is thought to be an effective approach to enhan...