碱金属
无水的
无机化学
硫化物
化学
材料科学
化学工程
有机化学
工程类
作者
Xuemin Li,Yangzhi Zhao,Alice Brennan,Miranda McCeig,Colin A. Wolden,Yongan Yang
出处
期刊:Chemsuschem
[Wiley]
日期:2017-05-16
卷期号:10 (14): 2904-2913
被引量:18
标识
DOI:10.1002/cssc.201700532
摘要
Abstract Anhydrous alkali sulfide (M 2 S, M=Li or Na) nanocrystals (NCs) are important materials central to the development of next generation cathodes and solid‐state electrolytes for advanced batteries, but not commercially available at present. This work reports an innovative method to directly synthesize M 2 S NCs through alcohol‐mediated reactions between alkali metals and hydrogen sulfide (H 2 S). In the first step, the alkali metal is complexed with alcohol in solution, forming metal alkoxide (ROM) and releasing hydrogen (H 2 ). Next, H 2 S is bubbled through the ROM solution, where both chemicals are completely consumed to produce phase‐pure M 2 S NC precipitates and regenerate alcohol that can be recycled. The M 2 S NCs morphology may be tuned through the choice of the alcohol and solvent. Both synthetic steps are thermodynamically favorable (Δ G m o <−100 kJ mol −1 ), proceeding rapidly to completion at ambient temperature with almost 100 % atom efficiency. The net result, H 2 S+2 m →M 2 S+H 2 , makes good use of a hazardous chemical (H 2 S) and delivers two value‐added products that naturally phase separate for easy recovery. This scalable approach provides an energy‐efficient and environmentally benign solution to the production of nanostructured materials required in emerging battery technologies.
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