电容器
能量密度
反铁电性
材料科学
工作(物理)
相变
相(物质)
能量(信号处理)
储能
循环(图论)
分析化学(期刊)
热力学
原子物理学
电压
功率(物理)
化学
电气工程
物理
光电子学
工程物理
铁电性
数学
有机化学
色谱法
量子力学
电介质
工程类
组合数学
作者
Gang Wang,Feng Qiao,Ling Zhang,Yingxuan Li,Mengjiao Wang,Qingshan Zhu,Ran Xu,Zhuo Xu,Yujun Feng,Xiaoyong Wei
摘要
Abstract Antiferroelectrics (AFEs) are widely used for energy storage capacitors. At present, there are two methods to evaluate the energy density of AFE: the recoverable energy density W re calculated by the low‐frequency P–E loop and the dynamic discharge energy density W dis calculated by the fast discharge current. It has been widely observed that the value of W dis is lower than W re but less attention was paid to how to increase W dis . Compared with W re , the value of W dis is closer to the energy density of AFE pulse capacitors in practical applications. In this work, the effects of phase transition properties on the dynamic discharge energy density were studied from the aspect of domain switching mobility. Compositions with P–E loop varying from “square” to “slant” were fabricated. It was found that in AFEs with “square” P–E loops, the recoverable energy density W re was remarkably higher than W dis . By modifying the P–E loops to long slim, the value of W dis tended to be close to W re , resulting in higher dynamic discharge energy efficiency. This indicates that by adjusting the P–E loop, higher W dis can be achieved in AFE with lower W re . The AFEs with long slim P–E loops also have faster discharge speeds, leading to higher power density. The outstanding fast discharge performance of AFEs with long slim P–E loops originated from their faster domain mobility and less viscous force during domain switching. This work provides a new approach to designing the AFEs energy storage materials by tuning their dynamic phase‐transition properties and domain mobility.
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