MXenes公司
材料科学
硫黄
电极
金属
无机化学
纳米技术
冶金
物理化学
化学
作者
Irfan Ali Soomro,Muhammad Nazim Lakhan,Abdul Hanan,Hamad Almujibah,Altaf Hussain,Abdul Hameed Pato,Mukhtiar Ahmed,Imran Ali Chandio,Saeed Ahmed Memon,Muhammad Umer,Faiza Bibi,Ming Lei
标识
DOI:10.1016/j.mtphys.2024.101453
摘要
Metal-sulfur batteries (MSBs) have garnered significant interest as upcoming energy storage options on account of their higher theoretical energy density. Nevertheless, these entities encounter numerous challenges, such as the insolubility of sulfur and metal polysulfides, the adverse shuttle effect resulting from the dissolution and migration of polysulfides, and their creation of metal dendrites. Extensive attention has been devoted in improving sulfur utilization and cycle stability. MXenes, a noteworthy group of two-dimensional transition metal carbides/carbonitrides, possess significant possibilities for MSBs. This potential of MXene arises from its favorable specific surface area, outstanding electrical conductivity, and strong chemical stability in battery applications. This review comprehensively analyses various synthesis methods, including their associated experimental parameters for tuning, physiochemical characteristics, structural modifications, stability issues, and significant discoveries pertaining to new MXenes. In addition, we have critically summarized the recent progress, future perspectives, notable challenges, and potential prospects for the successful development of MXenes-based electrodes for MSBs. This review will make a valuable contribution to the development of MSB technologies and their integration into the broader context of energy storage.
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