材料科学
高能
铅(地质)
纳米技术
矿物学
工程物理
物理
化学
地貌学
地质学
作者
Kaihua Yang,Gengguang Luo,Li Ma,Ruoxuan Che,Zhiyi Che,Feng Qin,Zhenyong Cen,Xiyong Chen,Jia-Jun Zhou,Nengneng Luo
标识
DOI:10.26599/jac.2024.9220859
摘要
Next-generation advanced high/pulsed power capacitors urgently require dielectric materials with outstanding energy storage performance. The Bi0.5Na0.5TiO3-based lead-free material exhibit high polarization, but the high remanent polarization and large polarization hysteresis limit its application in dielectric capacitors. Herein, high-entropy perovskite relaxor ferroelectrics (Na0.2Bi0.2Ba0.2Sr0.2Ca0.2)(Ti1-x%Zrx%)O3 are designed by adding multiple ions in A-site and replacing the B-site Ti4+ with a certain amount of Zr4+. The newly designed system showed high relaxor feature and slim P-E loops. Especially, improved relaxor feature and obviously delayed polarization saturation were found with the increasing of Zr4+. Of particular importance is that both high recoverable energy storage density of 6.6 J/cm3 and energy efficiency of 93.5% were achieved under 550 kV/cm for the x = 6 ceramic, accompanying with excellent frequency stability, appreciable thermal stability and prosperous discharge property. This work not only provides a potential dielectric material for energy storage applications, but also offers an effective strategy to obtain dielectric ceramics with ultrahigh comprehensive energy storage performance to meet the demanding requirements of advanced energy storage applications.
科研通智能强力驱动
Strongly Powered by AbleSci AI