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用于可充电锌电池的低共熔电解质化学

Eutectic Electrolytes Chemistry for Rechargeable Zn Batteries.

作者信息

Lu Xuejun, Hansen Evan J, He Guanjie, Liu Jian

机构信息

School of Engineering, Faculty of Applied Science, University of British Columbia, Kelowna, BC, V1V 1V7, Canada.

Christopher Ingold Laboratory, Department of Chemistry, University College London, 20 Gordon Street, London, WC1H 0AJ, UK.

出版信息

Small. 2022 May;18(21):e2200550. doi: 10.1002/smll.202200550. Epub 2022 Mar 15.

Abstract

Rechargeable zinc batteries (RZBs) have proved to be promising candidates as an alternative to lithium-ion batteries due to their low cost, inherent safety, and environmentally benign features. While designing cost-effective electrolyte systems with excellent compatibility with electrode materials, high energy/power density as well as long life-span challenge their further application as grid-scale energy storage devices. Eutectic electrolytes as a novel class of electrolytes have been extensively reported and explored taking advantage of their feasible preparation and high tunability. Recently, some perspectives have summarized the development and application of eutectic electrolytes in metal-based batteries, but their infancy requires further attention and discussion. This review systematically presents the fundamentals and definitions of eutectic electrolytes. Besides, a specific classification of eutectic electrolytes and their recent progress and performance on RZB fields are introduced as well. Significantly, the impacts of various composing eutectic systems are disserted for critical RZB chemistries including attractive features at electrolyte/electrode interfaces and ions/charges transport kinetics. The remaining challenges and proposed perspectives are ultimately induced, which deliver opportunities and offer practical guidance for the novel design of advanced eutectic electrolytes for superior RZB scenarios.

摘要

可充电锌电池(RZBs)因其低成本、固有安全性和环境友好特性,已被证明是锂离子电池的有前途的替代候选者。在设计与电极材料具有优异兼容性、高能量/功率密度以及长寿命的经济高效电解质系统时,这些挑战阻碍了它们作为电网规模储能设备的进一步应用。共晶电解质作为一类新型电解质,因其制备可行且可调性高,已得到广泛报道和探索。最近,一些观点总结了共晶电解质在金属基电池中的发展和应用,但其尚处于起步阶段,需要进一步关注和讨论。本综述系统地介绍了共晶电解质的基本原理和定义。此外,还介绍了共晶电解质的具体分类及其在可充电锌电池领域的最新进展和性能。重要的是,针对关键的可充电锌电池化学体系,探讨了各种组成共晶体系的影响,包括在电解质/电极界面的吸引人的特性以及离子/电荷传输动力学。最终归纳了剩余的挑战和提出的观点,为卓越的可充电锌电池场景下先进共晶电解质的新颖设计提供了机会和实际指导。

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