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高熵氧化物特征性能及其在水系锌离子电池中的应用进展

杨德意 李伟 梁秋群 彭瑞 曹钰媛 陈奇志 张修华 刘峥

电源技术2026,Vol.50Issue(1):33-40,8.
电源技术2026,Vol.50Issue(1):33-40,8.DOI:10.3969/j.issn.1002-087X.2026.01.004

高熵氧化物特征性能及其在水系锌离子电池中的应用进展

Research progress on characteristic properties of high entropy oxides and their applications in aqueous zinc ion batteries

杨德意 1李伟 1梁秋群 2彭瑞 1曹钰媛 1陈奇志 3张修华 3刘峥1

作者信息

  • 1. 桂林理工大学化学与生物工程学院电磁化学功能物质广西区重点实验室,广西桂林 541004
  • 2. 柳州工学院食品与化学工程学院,广西柳州 545616
  • 3. 广西汇元锰业有限责任公司,广西南宁 546115
  • 折叠

摘要

Abstract

Compared with traditional alloys,high-entropy alloys have attracted significant attention due to their unique mechanical properties,excellent wear resistance,remarkable corrosion resistance,and outstanding structural stability,while also demonstrating great potential in electromagnetic and catalytic applications.This review systematically summarizes recent advances in the innovative appli-cation of high-entropy oxides(High entropy oxide,HEOs)in aqueous zinc-ion batteries.The pivotal role of HEOs in enhancing energy density and cycling stability of zinc-ion batteries is first elucidated.Four typical synthesis methods(mechanical alloying,arc melting,solution combustion,and co-precipitation)are then analyzed in detail regarding their technical characteristics.Special emphasis is placed on elucidating the four characteristic effects(high-entropy effect,lattice distortion effect,slug-gish diffusion effect,and cocktail effect)and their synergistic mechanisms in HEOs.Furthermore,the influence of elemental doping strategies on electrochemical performance is thoroughly discussed,along with perspectives on future development directions of HEOs for zinc-ion battery energy storage.

关键词

高熵氧化物/水系锌离子电池/电化学储能

Key words

high entropy oxide/aqueous zinc-ion battery/electrochemical energy storage

分类

信息技术与安全科学

引用本文复制引用

杨德意,李伟,梁秋群,彭瑞,曹钰媛,陈奇志,张修华,刘峥..高熵氧化物特征性能及其在水系锌离子电池中的应用进展[J].电源技术,2026,50(1):33-40,8.

基金项目

国家自然科学基金地区项目(52264036) (52264036)

广西高校中青年教师科研基础能力提升项目(2025KY1158) (2025KY1158)

2022年桂林市创新平台和人才计划项目(20220124-14) (20220124-14)

电源技术

1002-087X

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