| Literature DB >> 28714200 |
Junhua Zhou1, Lu Wang1, Mingye Yang1, Jinghua Wu1, Fengjiao Chen1, Wenjing Huang1, Na Han1, Hualin Ye1, Feipeng Zhao1, Youyong Li1, Yanguang Li1.
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+ , Na+ , or K+ ), 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 VS2 nanosheet assemblies. Individual nanosheets are featured with a few atomic layer thickness, and they are hierarchically arranged with minimized stacking. Electrochemical measurements show that VS2 nanosheet assemblies enable the rapid and durable storage of Li+ , Na+ , or K+ ions. Most remarkably, the large reversible specific capacity and great cycling stability observed for both Na+ and K+ 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 VS2 has large adsorption energy and low diffusion barriers for the intercalation of alkali metal ions.Entities:
Keywords: alkali metal ions; cycling stability; nanosheet assemblies; universal host material; vanadium disulfide
Year: 2017 PMID: 28714200 DOI: 10.1002/adma.201702061
Source DB: PubMed Journal: Adv Mater ISSN: 0935-9648 Impact factor: 30.849