Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7001187 | Surfaces and Interfaces | 2018 | 25 Pages |
Abstract
Single crystal Sb2S3 nanowires are synthesized successfully through a simple one-step hydrothermal method. The morphological and structural characterizations reveal the uniform nanowire morphology of single crystal Sb2S3 with orthorhombic structure. The Sb2S3 nanowires exhibit a relatively high reversible capacity of 579 mAh gâ1 at a current density of 100â¯mA gâ1 and good cycling stability with 80.5% capacity retention after 50 cycles. The good rate capability of the Sb2S3 nanowires is also demonstrated by discharge/charge tests. The comparative study of electrochemical performance is made for two kinds of electrodes with different conductive additive contents. Sb2S3 nanowires electrodes with 20% acetylene black deliver a higher reversible capacity of 742 mAh gâ1 at a current rate of 50â¯mA gâ1. The good electrochemical performance of single crystal Sb2S3 nanowires can be ascribed to the one dimensional nanostructure of Sb2S3.
Related Topics
Physical Sciences and Engineering
Chemical Engineering
Colloid and Surface Chemistry
Authors
Pan Jin, Zuo Zongling, Deng Jianqiu, Yao Qingrong, Wang Zhongmin, Zhou Huaiying,