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用于钠离子电池的固溶体金属硫族化合物:作为阳极的最新进展

Solid Solution Metal Chalcogenides for Sodium-Ion Batteries: The Recent Advances as Anodes.

作者信息

Deng Wentao, Chen Jun, Yang Li, Liang Xinxing, Yin Shouyi, Deng Xinglan, Zou Guoqiang, Hou Hongshuai, Ji Xiaobo

机构信息

College of Chemistry and Chemical Engineering, Central South University, Changsha, 410083, China.

College of Chemistry and Chemical Engineering, Jiangxi Normal University, Nanchang, 330022, China.

出版信息

Small. 2021 Sep;17(35):e2101058. doi: 10.1002/smll.202101058. Epub 2021 Jul 9.

Abstract

The sodium-ion battery (SIB) has attracted ever growing attention as a promising alternative of the lithium-ion battery (LIB). Constructing appropriate anode materials is critical for speeding up the application of SIB. This review aims at guiding anode design from the material's perspective, and specifically focusing on solid solution metal chalcogenide anode. The sodium ion storage mechanisms of a solid solution metal chalcogenide anode is overviewed on basis of the elements it is composed of, and discusses how the solid solution character alters the electrochemical performances through diffusion and surface-controlled processes. In addition, by classifying solid solution metal chalcogenide as cation and anion, their recent applications are updated, and understanding the roles of guest elements in improving the electrochemical behaviors of a solid solution metal chalcogenide is carried out. After that, discussion of possible strategies to further optimize these anode materials in the future, flowing from crystal structure design to morphology control and finally to the intimacy improvement between conductive matrix and solid solution metal chalcogenide are also provided.

摘要

钠离子电池(SIB)作为锂离子电池(LIB)的一种有前景的替代方案,已引起越来越多的关注。构建合适的负极材料对于加速钠离子电池的应用至关重要。本综述旨在从材料角度指导负极设计,特别关注固溶体金属硫族化合物负极。基于其组成元素概述了固溶体金属硫族化合物负极的钠离子存储机制,并讨论了固溶体特性如何通过扩散和表面控制过程改变电化学性能。此外,通过将固溶体金属硫族化合物分为阳离子型和阴离子型,更新了它们的近期应用,并探讨了客体元素在改善固溶体金属硫族化合物电化学行为中的作用。之后,还讨论了未来进一步优化这些负极材料的可能策略,从晶体结构设计到形貌控制,最后到改善导电基体与固溶体金属硫族化合物之间的紧密性。

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