Jingzhe XuYongbin LiuDong WangHe LiLisheng ZhongJinghui GaoMing C. WuRuifeng YaoNan ZhangXiaojie LouShengtao LiXiaobing Ren
Abstract A fundamental paradox in energy storage dielectrics lies in the challenge of achieving superior performance consistently across both room and elevated temperatures. This is addressed by designing a self‐organized nanocomposite (1−x)(Ba,Sr)(Ti,Sn)O 3 ‐xBi 1.5 ZnNb 1.5 O 7 composed of nano‐sized antiferroelectric(AFE) particles embedded into a trirelaxor(TRE) matrix through nanoscale phase separation process. The optimal composition at x = 0.11 exhibits outstanding energy storage performance from room temperature (energy density = 8.5 J cm −3 , efficiency = 94.8%, and figure of merit of 167 J cm −3 ) up to 200 °C (energy density = 4.85 J cm −3 , efficiency >90% and figure of merit of 49 J cm −3 ), outperforming existing Pb‐free dielectrics. High‐resolution transmission electron microscopy and synchrotron x‐ray diffractometry reveal that the coexisting nanometric antiferroelectric particles and the trirelaxor nanodomains sustain over a wide temperature range. Piezoresponse force microscopy and phase‐field simulation show that hysteresis‐free switching of trirelaxor nanodomains enables enhanced polarization and low hysteretic loss. Resistivity shows a 2–3 order of magnitude increases accompanying significant increase in breakdown strength up to high temperatures, attributable to deep charge trapping effect at high‐density TRE/AFE interfaces as evidenced by thermally stimulated depolarization current. These favorable effects in the nano‐composite are responsible for its high energy storage performance up to high temperatures.
Chukai ChenJin QianJinfeng LinGuohui LiCheng ShiSimin WangChao SunGuanglong GeBo ShenJiwei Zhai
Yan WangDong WangJingzhe XuLisheng ZhongJinghui GaoAndong XiaoMing WuZhixin HeRuifeng YaoShengtao LiXiaobing Ren
Yan Wang (15435)Dong Wang (73290)Jingzhe Xu (11106436)Lisheng Zhong (6811295)Jinghui Gao (2811631)Andong Xiao (6294407)Ming Wu (238132)Zhixin He (10586147)Ruifeng Yao (6811292)Shengtao Li (2018101)Xiaobing Ren (2300005)
Yaqing LiWenping GengLe ZhangXiangyu YangXiaojun QiaoDongwan ZhengLiaoyuan ZhangJian HeXiaojuan HouXiujian Chou
P. T. GeBen TianZhengkai HongMengyao LiuSen YangXiaoqin Ke