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Strategies for Dendrite-Free Anode in Aqueous Rechargeable Zinc Ion Batteries

机译:可充电锌离子电池中树突式阳极的策略

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摘要

Ongoing interest is focused on aqueous zinc ion batteries (ZIBs) for mass-production energy storage systems as a result of their affordability, safety, and high energy density. Ensuring the stability of the electrode/electrolyte interface is of particular importance for prolonging the cycling ability to meet the practical requirements of rechargeable batteries. Zinc anodes exhibit poor cycle life and low coulombic efficiency, stemming from the severe dendrite growth, and irreversible byproducts such as H(2)and inactive ZnO. Great efforts have recently been devoted to zinc anode protection for designing high-performance ZIBs. However, the intrinsic origins of zinc plating/striping are poorly understood, which greatly delay its potential applications. Rather than focusing on battery metrics, this review delves deeply into the underlying science that triggers the deposition/dissolution of zinc ions. Furthermore, recent advances in modulating the zinc coordination environment, uniforming interfacial electric fields, and inducing zinc deposition are highlighted and summarized. Finally, perspectives and suggestions are provided for designing highly stable zinc anodes for the industrialization of the aqueous rechargeable ZIBs in the near future.
机译:由于其实惠,安全性和高能量密度,持续的兴趣集中在含水锌离子电池(Zibs)上用于大规模生产能储存系统。确保电极/电解质界面的稳定性特别重要,可以延长满足可充电电池的实际要求的循环能力。锌阳极表现出较差的循环寿命和低库仑效率,源于严重的树突生长,以及不可逆的副产物,如H(2)和无活性ZnO。最近努力致力于为设计高性能Zibs的锌阳极保护。然而,镀锌/条带的内在起源很差,这大大延迟了其潜在的应用。这篇评论而不是专注于电池指标,深深地深入研究触发锌离子沉积/溶解的潜在科学。此外,突出显示并概述了调节锌协调环境,均匀的界面电场和诱导锌沉积的最新进展。最后,提供了观点和建议,用于在不久的将来设计高度稳定的锌阳极,用于在不久的将来进行含水可充电ZIB的产业化。

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