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碳基锌离子电容器研究进展

罗俊辉 肖浩鸣 彭俊 王福健 罗先游 陈永

新型炭材料(中英文)2024,Vol.39Issue(5):918-945,28.
新型炭材料(中英文)2024,Vol.39Issue(5):918-945,28.DOI:10.1016/S1872-5805(24)60881-4

碳基锌离子电容器研究进展

Research progress on carbon-based zinc-ion capacitors

罗俊辉 1肖浩鸣 1彭俊 1王福健 1罗先游 2陈永3

作者信息

  • 1. 佛山大学材料与能源学院,广东佛山 528000
  • 2. 佛山大学材料与能源学院,广东佛山 528000||南开大学先进能源材料化学教育部重点实验室,天津 300071||华南理工大学环境与能源学院,广东 广州 510006
  • 3. 佛山大学材料与能源学院,广东佛山 528000||南开大学先进能源材料化学教育部重点实验室,天津 300071
  • 折叠

摘要

Abstract

Zinc-ion capacitors(ZICs),which consist of a capacitor-type electrode and a battery-type electrode,not only possess the high power density of supercapacitors and the high energy density of batteries,but also have other advantages such as abundant resources,high safety and environmental friendliness.However,they still face problems such as insufficient specific capacitance,a short cycling life,and narrow operating voltage and temperature ranges,which are hindering their practical use.We provide a com-prehensive overview of the fundamental theory of carbon-based ZICs and summarize recent research progress from three perspect-ives:the carbon cathode,electrolyte and zinc anode.The influence of the structure and surface chemical properties of the carbon ma-terials on the capacitive performance of ZICs is considered together with theoretical guidance for advancing their development and practical use.

关键词

锌离子电容器/电化学性能/炭材料/孔结构/表面化学性质

Key words

Zinc-ion capacitors/Electrochemical performance/Carbon materials/Pore structure/Surface chemical properties

分类

化学化工

引用本文复制引用

罗俊辉,肖浩鸣,彭俊,王福健,罗先游,陈永..碳基锌离子电容器研究进展[J].新型炭材料(中英文),2024,39(5):918-945,28.

基金项目

This work was supported by National Natural Science Foundation of China(52062012),Guang-dong Province Key Discipline Construction Project(2021ZDJS102),Innovation Team of Universities of Guangdong Province(2022KCXTD030),and Guang-dong Key Laboratory for Hydrogen Energy Technolo-gies(2018B030322005). 国家自然科学基金(52062012) (52062012)

广东省氢能技术重点实验室(2018B030322005) (2018B030322005)

广东省重点学科建设项目(2021ZDJS102) (2021ZDJS102)

广东省高校创新团队(2022KCXTD030). (2022KCXTD030)

新型炭材料(中英文)

OA北大核心CSTPCD

1007-8827

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