Materials Interfaces Center, Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences, Shenzhen, 518055, P. R. China.
Department of Physics, Department of Materials Science and Engineering, and Department of Biomedical Engineering, City University of Hong Kong, Tat Chee Avenue, Kowloon, Hong Kong, 999077, P. R. China.
Adv Mater. 2022 Dec;34(49):e2204636. doi: 10.1002/adma.202204636. Epub 2022 Oct 31.
Metal-sulfur (M-S) batteries are promising energy-storage devices due to their advantages such as large energy density and the low cost of the raw materials. However, M-S batteries suffer from many drawbacks. Endowing the electrodes and electrolytes with the proper catalytic activity is crucial to improve the electrochemical properties of M-S batteries. With regard to the S cathodes, advanced electrode materials with enhanced electrocatalytic effects can capture polysulfides and accelerate electrochemical conversion and, as for the metal anodes, the proper electrode materials can provide active sites for metal deposition to reduce the deposition potential barrier and control the electroplating or stripping process. Moreover, an advanced electrolyte with desirable design can catalyze electrochemical reactions on the cathode and anode in high-performance M-S batteries. In this review, recent progress pertaining to the design of advanced electrode materials and electrolytes with the proper catalytic effects is summarized. The current progress of S cathodes and metal anodes in different types of M-S batteries are discussed and future development directions are described. The objective is to provide a comprehensive review on the current state-of-the-art S cathodes and metal anodes in M-S batteries and research guidance for future development of this important class of batteries.
金属-硫(M-S)电池由于其能量密度大、原材料成本低等优点,是很有前途的储能设备。然而,M-S 电池存在许多缺点。赋予电极和电解质适当的催化活性对于改善 M-S 电池的电化学性能至关重要。对于 S 正极,具有增强电催化效果的先进电极材料可以捕获多硫化物并加速电化学转化,而对于金属负极,合适的电极材料可以提供金属沉积的活性位点,以降低沉积势垒并控制电镀或剥离过程。此外,具有理想设计的先进电解质可以在高性能 M-S 电池中催化阴极和阳极的电化学反应。本综述总结了具有适当催化效应的先进电极材料和电解质的设计的最新进展。讨论了不同类型 M-S 电池中 S 正极和金属负极的最新进展,并描述了未来的发展方向。目的是对 M-S 电池中 S 正极和金属负极的当前最新技术进行全面综述,并为这一重要电池类别的未来发展提供研究指导。