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◆ ACS Energy Letters2026-01-05· Materials science

Harnessing Nanoscale Heterostructure Core–Shell Phase for Enhanced Energy Storage in BiFeO <sub>3</sub> -Based Ceramics

Jiarong Lv, Wei Zhang, Sen Chen, Jinjun Liu, Tengfei Hu, H. Luo, Weiping Li, Zhongbin Pan

原始摘要(英文原文)· Original abstract
Electrostatic capacitors are indispensable components in modern electronic and power systems due to their ultrafast charging/discharging capabilities and exceptional power density. However, their application is constrained by an inherently low energy density, hindering progress in device miniaturization and system integration. Herein, we propose a universal nanosized heterostructure core–shell phase design for BiFeO 3 -based ceramics to enhance energy storage capabilities. Atomic-scale structural analysis confirms the construction of a core–shell architecture comprising a rhombohedral (R) phase shell encapsulating a tetragonal (T) phase core. This distinctive structure could minimize hysteresis loss and delay polarization saturation by reducing polarization anisotropy and lowering domain-switching barriers while simultaneously improving breakdown strength through the introduction of disordered atomic configurations with localized lattice distortions and grain refinement. As a result, these features cause a high recoverable energy density of 10.5 J·cm –3 . This study establishes a paradigm for high-performance dielectric capacitors, paving the way for advanced next-generation power devices.
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