材料科学
凝聚态物理
极化(电化学)
电介质
陶瓷
四方晶系
限制
不稳定性
极地的
超短脉冲
工程物理
介电常数
熵(时间箭头)
弛豫铁电体
介电损耗
储能
光电子学
消散
组态熵
约束(计算机辅助设计)
作者
Zhentao Wang,Weichen Zhao,Zhaochen Xi,Wenyuan Liu,Da Li,Diming Xu,Guoqiang He,Yang Liu,Guiwei Yan,Jian Bao,Ziqi Fang,Xu Liang,Takahiro Shimada,C. Karen Liu,Tao Xu,Wenfeng Liu,Tao Zhou,Di Zhou
出处
期刊:ACS Nano
[American Chemical Society]
日期:2026-03-19
标识
DOI:10.1021/acsnano.5c22391
摘要
How to further regulate the size and stability of polar nanoregions (PNRs) remains a fundamental constraint to simultaneously achieving ultrahigh efficiency (η) and large recoverable energy density (Wrec), thereby limiting the development of near-zero-loss dielectric capacitors. Here, guided by phase-field simulations, we propose an entropy-driven local multiphase polarization state in which rhombohedral (R)- and tetragonal (T)-symmetry PNRs of ∼1 nm in size are embedded within a cubic (C) matrix, effectively reducing hysteretic loss by lowering the domain-switching barriers in Bi0.5Na0.5TiO3-based ceramics. Consequently, an ultrahigh η of 95.1%, a large Wrec of 6.8 J cm-3, and, simultaneously, an ultrafast discharge time of 240 ns are achieved in the high-entropy (1.76R) ceramic capacitors. The results indicate that entropy regulation can facilitate low-loss dielectric behavior, offering a viable approach for designing near-zero-dissipation energy-storage materials.
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