材料科学
储能
陶瓷
极化(电化学)
反铁电性
电容
脉冲功率
功率密度
复合材料
光电子学
电压
场强
能量密度
电介质
介电强度
电容器
大气温度范围
航程(航空)
击穿电压
作者
Lei Zhao,Yichen Li,Weipeng Liu,Ke Xu,Huajie Luo,Houbing Huang,Jing Wang
标识
DOI:10.1002/adma.202516723
摘要
Antiferroelectric (AFE) ceramics with typical double polarization-electric field loops hold exceptional potential for high capacitance density capacitors. However, the inherent contradiction between polarization and breakdown strength limits the energy storage performance in AFE ceramics. Herein, the polarization and breakdown strength are improved simultaneously via optimizing the sandwich structure with alternate large polarization (Ag0.82Bi0.06)NbO3 layer and high breakdown strength (Ag0.70Bi0.10)NbO3 layer. A recoverable energy storage density Wrec of 16.8 J cm-3 with energy efficiency η of 81.3% is realized in (Ag0.70Bi0.10)NbO3/(Ag0.82Bi0.06)NbO3/(Ag0.70Bi0.10)NbO3 ceramic, attaining the peak value of AgNbO3-based AFE ceramics. Moreover, the sandwich-structured ceramic shows good stabilities with variations of less than 7.0% over a temperature range of 30-150 °C, frequency range of 1-500 Hz, and 105 cycling in Wrec, and a discharge energy density Wd of 6.2 J cm-3 along with a fast discharge time t0.9 of 120 ns. This research provides an effective strategy for enhancing the energy storage performance of lead-free AFE ceramics, highlighting their potential for practical applications in pulse power systems.
科研通智能强力驱动
Strongly Powered by AbleSci AI