奥里维里斯
材料科学
电介质
铁电性
陶瓷
居里温度
铋
铁电陶瓷
电容器
陶瓷电容器
储能
微观结构
钛酸铋
钛酸钡
矿物学
复合材料
光电子学
凝聚态物理
冶金
铁磁性
电压
热力学
电气工程
功率(物理)
化学
物理
工程类
作者
Jia-Jia Ren,Di Zhou,Da Li,Yan Guo,Weichen Zhao,Tao Zhou,Li‐Xia Pang
标识
DOI:10.1002/adem.202201677
摘要
Bismuth‐layered ferroelectric materials with Aurivillius structure are the potential materials for high‐temperature ferroelectric materials because of their high Curie temperature and excellent ferroelectric fatigue resistance. Herein, the Aurivillius phase relaxation ferroelectrics as Ba n −3 Bi 4 Ti n O 3 n +3 ( n = 4–7) ceramics are studied. The layered structures are controlled by adjusting the number of BO 6 octahedrons and (Bi 2 O 2 ) 2+ layers. The dielectric temperature stability and voltage resistance of bismuth barium titanate ceramics are improved. The influence of composition and microstructure on their electrical properties is explored. The relationship between dielectric properties and storage properties of bismuth barium titanate ceramics and the number of layers is obtained. Ba 2 Bi 4 Ti 5 O 18 ceramics show the best performance with an energy storage density of up to 1.16 J cm −3 and a high efficiency of ≈87.2% (under 250 kV cm −1 ). This work provides key materials and technologies for the next generation of energy storage capacitors that can be applied in high‐temperature environments as well as a new reference for the development of dielectric materials and the functional optimization of other Aurivillius phase ceramic materials.
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