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用于可充电金属电池的有机硫材料研究进展

Advances of Organosulfur Materials for Rechargeable Metal Batteries.

作者信息

Guo Wei, Wang Dan-Yang, Chen Qiliang, Fu Yongzhu

机构信息

College of Chemistry, Zhengzhou University, Zhengzhou, 450001, P. R. China.

出版信息

Adv Sci (Weinh). 2022 Feb;9(4):e2103989. doi: 10.1002/advs.202103989. Epub 2021 Nov 25.

Abstract

Battery materials have become a hotspot in the academic research. Organosulfur compounds are considered as a promising class of cathode materials for rechargeable metal batteries. They have attracted increasing attention in recent years after a long-term stagnancy since 1980s. Recent studies have focused on the understanding of redox mechanism of linear organosulfur molecules R-S -R with defined structures. In addition, some new organosulfur compounds are developed. The reversible sulfursulfur (SS) bond breakage/formation of organosulfur in batteries makes them applicable as functional materials in batteries. In this review, new organosulfur materials including molecules, polymers, and composites are introduced. In the following, organosulfur-inorganic hybrid materials are discussed, which have shown unique redox process and enhanced battery performance. In the third part, organosulfur additives are used in Li-S batteries, which can improve the formation of solid-electrolyte interphase (SEI) and alter the redox pathways of sulfur cathodes. In the fourth part, organosulfur materials used in other metal batteries are introduced. Lastly, a summary and some perspectives are given. This review presents an overview of the recent advances of organosulfur materials in batteries and provides guidance for the future development of these materials.

摘要

电池材料已成为学术研究的热点。有机硫化合物被认为是一类有前景的可充电金属电池正极材料。自20世纪80年代长期停滞以来,它们近年来受到越来越多的关注。最近的研究集中在理解具有特定结构的线性有机硫分子R-S-R的氧化还原机制。此外,还开发了一些新型有机硫化合物。电池中有机硫的可逆硫-硫(S-S)键断裂/形成使其可作为电池中的功能材料。在这篇综述中,介绍了包括分子、聚合物和复合材料在内的新型有机硫材料。接下来,讨论了有机硫-无机杂化材料,其显示出独特的氧化还原过程并提高了电池性能。在第三部分,有机硫添加剂用于锂硫电池,可改善固体电解质界面(SEI)的形成并改变硫正极的氧化还原途径。在第四部分,介绍了用于其他金属电池的有机硫材料。最后,给出了总结和一些展望。这篇综述概述了有机硫材料在电池方面的最新进展,并为这些材料的未来发展提供指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96ac/8811802/088f723e1188/ADVS-9-2103989-g008.jpg

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