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用于碱金属离子存储的二维过渡金属硫族化合物

Two-Dimensional Transition Metal Chalcogenides for Alkali Metal Ions Storage.

作者信息

Zhang Yingxi, Zhang Liao, Lv Tu'an, Chu Paul K, Huo Kaifu

机构信息

Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, No.1037 Luoyu Road, Wuhan, 430074, 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, Hong Kong, P.R. China.

出版信息

ChemSusChem. 2020 Mar 20;13(6):1114-1154. doi: 10.1002/cssc.201903245. Epub 2020 Mar 9.

Abstract

On the heels of exacerbating environmental concerns and ever-growing global energy demand, development of high-performance renewable energy-storage and -conversion devices has aroused great interest. The electrode materials, which are the critical components in electrochemical energy storage (EES) devices, largely determine the energy-storage properties, and the development of suitable active electrode materials is crucial to achieve efficient and environmentally friendly EES technologies albeit the challenges. Two-dimensional transition-metal chalcogenides (2D TMDs) are promising electrode materials in alkali metal ion batteries and supercapacitors because of ample interlayer space, large specific surface areas, fast ion-transfer kinetics, and large theoretical capacities achieved through intercalation and conversion reactions. However, they generally suffer from low electronic conductivities as well as substantial volume change and irreversible side reactions during the charge/discharge process, which result in poor cycling stability, poor rate performance, and low round-trip efficiency. In this Review, recent advances of 2D TMDs-based electrode materials for alkali metal-ion energy-storage devices with the focus on lithium-ion batteries (LIBs), sodium-ion batteries (SIBs), potassium-ion batteries (PIBs), high-energy lithium-sulfur (Li-S), and lithium-air (Li-O ) batteries are described. The challenges and future directions of 2D TMDs-based electrode materials for high-performance LIBs, SIBs, PIBs, Li-S, and Li-O batteries as well as emerging alkali metal-ion capacitors are also discussed.

摘要

随着环境问题的加剧和全球能源需求的不断增长,高性能可再生能源存储和转换设备的开发引起了极大关注。电极材料作为电化学储能(EES)设备的关键组成部分,在很大程度上决定了储能性能。尽管存在挑战,但开发合适的活性电极材料对于实现高效且环保的EES技术至关重要。二维过渡金属硫族化合物(2D TMDs)由于具有充足的层间空间、大的比表面积、快速的离子转移动力学以及通过嵌入和转换反应实现的大理论容量,在碱金属离子电池和超级电容器中是很有前景的电极材料。然而,它们通常存在电子电导率低以及在充放电过程中大量的体积变化和不可逆副反应的问题,这导致循环稳定性差、倍率性能差和往返效率低。在本综述中,描述了基于2D TMDs的用于碱金属离子储能设备的电极材料的最新进展,重点是锂离子电池(LIBs)、钠离子电池(SIBs)、钾离子电池(PIBs)、高能锂硫(Li-S)和锂空气(Li-O)电池。还讨论了基于2D TMDs的电极材料在高性能LIBs、SIBs、PIBs、Li-S和Li-O电池以及新兴的碱金属离子电容器方面面临的挑战和未来发展方向。

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