Hierarchical VS<sub>2</sub> Nanosheet Assemblies: A Universal Host Material for the Reversible Storage of Alkali Metal Ions.

Zhou, Junhua; Wang, Lu; Yang, Mingye; Wu, Jinghua; Chen, Fengjiao; Huang, Wenjing; Han, Na; Ye, Hualin et al. · Adv Mater · 2017

basic_science · Level V

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Abstract

Reversible electrochemical storage of alkali metal ions is the basis of many secondary batteries. Over years, various electrode materials are developed and optimized for a specific type of alkali metal ions (Li<sup>+</sup> , Na<sup>+</sup> , or K<sup>+</sup> ), yet there are very few (if not none) candidates that can serve as a universal host material for all of them. Herein, a facile solvothermal method is developed to prepare VS<sub>2</sub> nanosheet assemblies. Individual nanosheets are featured with a few atomic layer thickness, and they are hierarchically arranged with minimized stacking. Electrochemical measurements show that VS<sub>2</sub> nanosheet assemblies enable the rapid and durable storage of Li<sup>+</sup> , Na<sup>+</sup> , or K<sup>+</sup> ions. Most remarkably, the large reversible specific capacity and great cycling stability observed for both Na<sup>+</sup> and K<sup>+</sup> are extraordinary and superior to most existing electrode materials. The experimental results of this study are further supported by density functional theory calculations showing that the layered structure of VS<sub>2</sub> has large adsorption energy and low diffusion barriers for the intercalation of alkali metal ions.