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可充电锌电池概述与未来展望

An Overview and Future Perspectives of Rechargeable Zinc Batteries.

作者信息

Shi Yuchuan, Chen Ye, Shi Lei, Wang Ke, Wang Biao, Li Long, Ma Yaming, Li Yuhan, Sun Zehui, Ali Wajid, Ding Shujiang

机构信息

Department of Applied Chemistry, School of Science, State Key Laboratory of Electrical Insulation and Power Equipment, Xi'an Jiaotong University, Xi'an, 710049, P. R. China.

出版信息

Small. 2020 Jun;16(23):e2000730. doi: 10.1002/smll.202000730. Epub 2020 May 13.

Abstract

Aqueous rechargeable zinc-based batteries have sparked a lot of enthusiasm in the energy storage field recently due to their inherent safety, low cost, and environmental friendliness. Although remarkable progress has been made in the exploration of performance so far, there are still many challenges such as low working voltage and dissolution of electrode materials at the material and system level. Herein, the central tenet is to establish a systematic summary for the construction and mechanism of different aqueous zinc-based batteries. Details for three major zinc-based battery systems, including alkaline rechargeable Zn-based batteries (ARZBs), aqueous Zn ion batteries (AZIBs), and dual-ion hybrid Zn batteries (DHZBs) are given. First, the electrode materials and energy storage mechanism of the three types of zinc-based batteries are discussed to provide universal guidance for these batteries. Then, the electrode behavior of zinc anodes and strategies to deal with problems such as dendrite and passivation are recommended. Finally, some challenge-oriented solutions are provided to facilitate the next development of zinc-based batteries. Combining the characteristics of zinc-based batteries with good use of concepts and ideas from other disciplines will surely pave the way for its commercialization.

摘要

水系可充电锌基电池因其固有的安全性、低成本和环境友好性,近年来在储能领域引发了广泛关注。尽管目前在性能探索方面已取得显著进展,但在材料和系统层面仍存在许多挑战,如工作电压低和电极材料溶解等问题。在此,核心宗旨是对不同水系锌基电池的构建和机理进行系统总结。给出了三种主要锌基电池体系的详细信息,包括碱性可充电锌基电池(ARZBs)、水系锌离子电池(AZIBs)和双离子混合锌电池(DHZBs)。首先,讨论了这三种类型锌基电池的电极材料和储能机理,为这些电池提供通用指导。然后,推荐了锌负极的电极行为以及应对枝晶和钝化等问题的策略。最后,提供了一些面向挑战的解决方案,以促进锌基电池的进一步发展。将锌基电池的特性与其他学科的概念和思想充分结合,必将为其商业化铺平道路。

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