首页|Polymer engineering for electrodes of aqueous zinc ion batteries

Polymer engineering for electrodes of aqueous zinc ion batteries

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With the increasing demand for scalable and cost-effective electrochemical energy storage,aqueous zinc ion batteries(AZIBs)have a broad application prospect as an inexpensive,efficient,and naturally secure energy storage device.However,the limitations suffered by AZIBs,including volume expansion and active materials dissolution of the cathode,electrochemical corrosion,irreversible side reactions,zinc dendrites of the anode,have seriously decelerated the civilianization process of AZIBs.Currently,poly-mers have tremendous superiority for application in AZIBs attributed to their exceptional chemical sta-bility,tunable structure,high energy density and outstanding mechanical properties.Considering the expanding applications of AZIBs and the superiority of polymers,this comprehensive paper meticulously reviews the benefits of utilizing polymeric applied to cathodes and anodes,respectively.To begin with,with adjustable structure as an entry point,the correlation between polymer structure and the function of energy storage as well as optimization is deeply investigated in respect to the mechanism.Then,depending on the diversity of properties and structures,the development of polymers in AZIBs is summa-rized,including conductive polymers,redox polymers as well as carbon composite polymers for cathode and polyvinylidene fluoride-,carbonyl-,amino-,nitrile-based polymers for anode,and a comprehensive evaluation of the shortcomings of these strategies is provided.Finally,an outlook highlights some of the challenges posed by the application of polymers and offers insights into the potential future direction of polymers in AZIBs.It is designed to provide a thorough reference for researchers and developers working on polymer for AZIBs.

Aqueous zinc ion batteriesPolymerMulti-functionAnode protectionEnergy storage

Zhi Peng、Zemin Feng、Xuelian Zhou、Siwen Li、Xuejing Yin、Zekun Zhang、Ningning Zhao、Zhangxing He、Lei Dai、Ling Wang、Chao Lu

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School of Chemical Engineering,North China University of Science and Technology,Tangshan 063210,Hebei,China

State Key Laboratory of Chemical Resource Engineering,Beijing University of Chemical Technology,Beijing 100029,China

国家自然科学基金国家自然科学基金国家自然科学基金Hebei Natural Science Fund for Distinguished Young ScholarYouth Talent Program of Hebei Provincial Education Department河北省自然科学基金河北省自然科学基金河北省自然科学基金河北省自然科学基金Central Guiding Local Science and Technology Development Fund Project湖北省教育厅科技项目Science and.Technology Planning Project of Tangshan City

518720905177209722304055E2019209433BJ2018020E2020209151E2022209158B2022209026D2023209012236Z4409GSLRC201902822130227H

2024

能源化学
中国科学院大连化学物理研究所 中国科学院成都有机化学研究所

能源化学

CSTPCDEI
影响因子:0.654
ISSN:2095-4956
年,卷(期):2024.91(4)
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