Research progress on electrolyte additives design and their functions for zinc-ion batteries

Yuxin Cui, Rui Zhang, Sinian Yang, Lili Liu, Shimou Chen
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引用次数: 1

Abstract

In recent years, zinc-ion batteries (ZIBs) have been considered one of the most promising candidates for next-generation electrochemical energy storage systems due to their advantages of high safety, high specific capacity, and high economic efficiency. As an indispensable component, the electrolyte has the function of connecting the cathode and the anode, and play a key role on the performance of the battery. Different types of electrolytes have different effects on the performance of ZIBs, and the use of additives has further developed the research on modified electrolytes, thus effectively solving many serious problems faced by ZIBs. Therefore, to further explore the improvement of ZIBs by electrolyte engineering, it is necessary to summarize the current status of various electrolyte additives design, as well as their functions and mechanism in ZIBs. This paper analyzes the challenges faced by different electrolytes, reviews the different solutions of additives to solve battery problems in liquid electrolytes and solid electrolytes, and finally makes suggestions for the development of modified ZIBs electrolytes. It is hoped that the review and strategies proposed in this paper will facilitate development of new electrolyte additives for ZIBs.
锌离子电池电解质添加剂设计及其功能研究进展
近年来,锌离子电池由于具有高安全性、高比容量和高经济性等优点,被认为是下一代电化学储能系统最有前途的候选材料之一。电解液作为电池不可缺少的组成部分,具有连接阴极和阳极的作用,对电池的性能起着关键作用。不同类型的电解质对zib的性能有不同的影响,添加剂的使用进一步发展了改性电解质的研究,从而有效地解决了zib面临的许多严重问题。因此,为了进一步探索电解液工程对zib的改善,有必要总结各种电解液添加剂设计的现状,以及它们在zib中的作用和机理。本文分析了不同电解质面临的挑战,综述了添加剂在液体电解质和固体电解质中解决电池问题的不同方法,并对改性ZIBs电解质的发展提出了建议。希望本文的综述和提出的策略能够促进新型ZIBs电解质添加剂的开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
7.40
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