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用于调控锂金属电池性能的功能性有机硫基介质的研究进展

Advances in Functional Organosulfur-Based Mediators for Regulating Performance of Lithium Metal Batteries.

作者信息

Fan Qianqian, Zhang Junhao, Fan Siying, Xi Baojuan, Gao Zhiyuan, Guo Xingmei, Duan Zhongyao, Zheng Xiangjun, Liu Yuanjun, Xiong Shenglin

机构信息

College of Environmental and Chemical Engineering, Jiangsu University of Science and Technology, Zhenjiang, 212003, P. R. China.

College of Chemistry and Chemical Engineering, Shandong University, Jinan, 250100, P. R. China.

出版信息

Adv Mater. 2024 Nov;36(45):e2409521. doi: 10.1002/adma.202409521. Epub 2024 Sep 9.

Abstract

Rechargeable lithium metal batteries (LMBs) are promising next-generation energy storage systems due to their high theoretical energy density. However, their practical applications are hindered by lithium dendrite growth and various intricate issues associated with the cathodes. These challenges can be mitigated by using organosulfur-based mediators (OSMs), which offer the advantages of abundance, tailorable structures, and unique functional adaptability. These features enable the rational design of targeted functionalities, enhance the interfacial stability of the lithium anode and cathode, and accelerate the redox kinetics of electrodes via alternative reaction pathways, thereby effectively improving the performance of LMBs. Unlike the extensively explored field of organosulfur cathode materials, OSMs have garnered little attention. This review systematically summarizes recent advancements in OSMs for various LMB systems, including lithium-sulfur, lithium-selenium, lithium-oxygen, lithium-intercalation cathode batteries, and other LMB systems. It briefly elucidates the operating principles of these LMB systems, the regulatory mechanisms of the corresponding OSMs, and the fundamentals of OSMs activity. Ultimately, strategic optimizations are proposed for designing novel OSMs, advanced mechanism investigation, expanded applications, and the development of safe battery systems, thereby providing directions to narrow the gap between rational modulation of organosulfur compounds and their practical implementation in batteries.

摘要

可充电锂金属电池(LMBs)因其高理论能量密度而成为很有前景的下一代储能系统。然而,锂枝晶生长以及与阴极相关的各种复杂问题阻碍了它们的实际应用。使用基于有机硫的介质(OSMs)可以缓解这些挑战,OSMs具有储量丰富、结构可定制和独特功能适应性等优点。这些特性能够合理设计目标功能,增强锂阳极和阴极的界面稳定性,并通过替代反应途径加速电极的氧化还原动力学,从而有效提高LMBs的性能。与广泛探索的有机硫阴极材料领域不同,OSMs很少受到关注。本文综述系统总结了用于各种LMB系统的OSMs的最新进展,包括锂硫、锂硒、锂氧、锂插层阴极电池和其他LMB系统。简要阐明了这些LMB系统的工作原理、相应OSMs的调控机制以及OSMs活性的基本原理。最终,针对新型OSMs的设计、深入的机理研究、扩展应用以及安全电池系统的开发提出了战略优化方案,从而为缩小有机硫化合物的合理调控与其在电池中的实际应用之间的差距提供指导。

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