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Hierarchical MXene/transition metal chalcogenide heterostructures for electrochemical energy storage and conversion

机译:分层MXene /过渡金属硫族化物异质结构对电化学能源存储和转换

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摘要

MXenes have gained rapidly increasing attention owing to their two-dimensional (2D) layered structures and unique mechanical and physicochemical properties. However, MXenes have some intrinsic limitations (e.g., the restacking tendency of the 2D structure) that hinder their practical applications. Transition metal chalcogenide (TMC) materials such as SnS, NiS, MoS2, FeS2, and NiSe2 have attracted much interest for energy storage and conversion by virture of their earth-abundance, low costs, moderate overpotentials, and unique layered structures. Nonetheless, the intrinsic poor electronic conductivity and huge volume change of TMC materials during the alkali metal-ion intercalation/deintercalation process cause fast capacity fading and poor-rate and poor-cycling performances. Constructing heterostructures based on metallic conductive MXenes and highly electrochemically active TMCs is a promising and effective strategy to solve these problems and enhance the electrochemical performances. This review highlights and discusses the recent research development of MXenes and hierarchical MXene/TMC heterostructures, with a focus on the synthesis strategies, surface/heterointerface engineering, and potential applications for lithium-ion batteries, sodium-ion batteries, lithium–sulfur batteries, supercapacitors, electrocatalysis, and photocatalysis. The critical challenges and perspectives of the future development of MXenes and hierarchical MXene/TMC heterostructures for electrochemical energy storage and conversion are forecasted.
机译:MXenes迅速获得了越来越多的关注由于他们的二维(2 d)分层结构和独特的机械物理化学性质。一些内在的限制(例如,放置二维结构的趋势),阻碍他们实际的应用程序。硫族化物(TMC)材料,如SnS, NiS,二硫化钼、FeS2 NiSe2吸引了对能量储存和转换美德的earth-abundance、低成本,温和的过电压,和独特的分层结构。电子电导率和巨大的体积变化TMC材料在碱性金属离子夹层/ deintercalation过程导致快容量衰减和贫民救济税和poor-cycling表演。金属导电MXenes和高度电化学差旅管理公司是一个有前途的有效的策略解决这些问题提高电化学性能。审查突出部分和讨论最近的研究MXenes和层次的发展MXene / TMC异质结构,关注合成策略,表面/异质结面工程和潜在的应用锂离子电池、钠电池、锂硫电池,超级电容器,电催化作用,光催化作用。关键的挑战和视角的未来发展MXenes和层次对电化学MXene / TMC异质结构能量储存和转换是预测。

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