Yao Wangbing, Zheng Zhuoyuan, Zhou Jie, Liu Dongming, Song Jinbao, Zhu Yusong
School of Materials Science and Engineering, Anhui University of Technology, Maanshan 243002, China.
Nanjing Gotion Battery Co., Ltd., Nanjing 211599, China.
Polymers (Basel). 2023 Oct 10;15(20):4047. doi: 10.3390/polym15204047.
Aqueous zinc-ion batteries (ZIBs) have gained significant recognition as highly promising rechargeable batteries for the future due to their exceptional safety, low operating costs, and environmental advantages. Nevertheless, the widespread utilization of ZIBs for energy storage has been hindered by inherent challenges associated with aqueous electrolytes, including water decomposition reactions, evaporation, and liquid leakage. Fortunately, recent advances in solid-state electrolyte research have demonstrated great potential in resolving these challenges. Moreover, the flexibility and new chemistry of solid-state electrolytes offer further opportunities for their applications in wearable electronic devices and multifunctional settings. Nonetheless, despite the growing popularity of solid-state electrolyte-based-ZIBs in recent years, the development of solid-state electrolytes is still in its early stages. Bridging the substantial gap that exists is crucial before solid-state ZIBs become a practical reality. This review presents the advancements in various types of solid-state electrolytes for ZIBs, including film separators, inorganic additives, and organic polymers. Furthermore, it discusses the performance and impact of solid-state electrolytes. Finally, it outlines future directions for the development of solid-state ZIBs.
水系锌离子电池(ZIBs)因其卓越的安全性、低运营成本和环境优势,作为未来极具前景的可充电电池已获得广泛认可。然而,水系电解质相关的固有挑战,包括水分解反应、蒸发和液体泄漏,阻碍了ZIBs在储能领域的广泛应用。幸运的是,固态电解质研究的最新进展已显示出解决这些挑战的巨大潜力。此外,固态电解质的灵活性和新化学性质为其在可穿戴电子设备和多功能环境中的应用提供了更多机会。尽管如此,尽管近年来基于固态电解质的ZIBs越来越受欢迎,但固态电解质的开发仍处于早期阶段。在固态ZIBs成为现实之前,弥合现存的巨大差距至关重要。本综述介绍了用于ZIBs的各种类型固态电解质的进展,包括薄膜分离器、无机添加剂和有机聚合物。此外,还讨论了固态电解质的性能和影响。最后,概述了固态ZIBs的未来发展方向。