材料科学
电介质
薄膜
电容器
复合材料
热稳定性
储能
薄膜电容器
结晶
热的
光电子学
电压
电气工程
纳米技术
热力学
化学工程
功率(物理)
物理
工程类
作者
Bingbing Yang,Mengyao Guo,Dongpo Song,Xianwu Tang,Renhuai Wei,Ling Hu,Jie Yang,W. H. Song,J. M. Dai,Xiaojie Lou,Xuebin Zhu,Yuping Sun
摘要
Developing lead-free film dielectric capacitors with high-performance of energy storage density, efficiency, fatigue endurance, and thermal stabilities is desirable. Here, we report energy storage properties in (1-x)BaTiO3-xBi3.25La0.75Ti3O12 thin films. It is revealed that a 0.6BaTiO3-0.4Bi3.25La0.75Ti3O12 thin film with a thickness of 280 nm and a crystallization temperature of 650 °C shows a breakdown strength of 3.23 MV/cm with a large polarization value and dielectric constant. An ultrahigh energy storage density of 61.1 J/cm3 and an efficiency of 84.2% are simultaneously achieved at room temperature. Additionally, excellent fatigue endurance after 6 × 109 cycles and good thermal stability up to 150 °C are observed, implying excellent energy storage performance in 0.6BaTiO3-0.4Bi3.25La0.75Ti3O12 thin films.
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