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Highly Ambient-Stable 1T-MoS2 and 1T-WS2 by Hydrothermal Synthesis under High Magnetic Fields

Authors :
Ding, Wei
Hu, Lin
Dai, Jianming
Tang, Xianwu
Wei, Renhuai
Sheng, Zhigao
Liang, Changhao
Shao, Dingfu
Song, Wenhai
Liu, Qiannan
Chen, Mingzhe
Zhu, Xiaoguang
Chou, Shulei
Zhu, Xuebin
Chen, Qianwang
Sun, Yuping
Dou, Shi Xue
Ding, Wei
Hu, Lin
Dai, Jianming
Tang, Xianwu
Wei, Renhuai
Sheng, Zhigao
Liang, Changhao
Shao, Dingfu
Song, Wenhai
Liu, Qiannan
Chen, Mingzhe
Zhu, Xiaoguang
Chou, Shulei
Zhu, Xuebin
Chen, Qianwang
Sun, Yuping
Dou, Shi Xue
Source :
Australian Institute for Innovative Materials - Papers
Publication Year :
2019

Abstract

The phase-controlled synthesis of metallic and ambient-stable 2D MX2 (M is Mo or W; X is S) with 1T octahedral coordination will endow these materials with superior performance compared with their semiconducting 2H coordination counterparts. We report a clean and facile route to prepare 1T-MoS2 and 1T-WS2 through hydrothermal processing under high magnetic fields. We reveal that the as-synthesized 1T-MoS2 and 1T-WS2 are ambient-stable for more than 1 year. Electrochemical measurements show that 1T-MoS2 performs much better than 2H-MoS2 as the anode for sodium ion batteries. These results can provide a clean and facile method to prepare ambient-stable 1T-phase MX2.

Details

Database :
OAIster
Journal :
Australian Institute for Innovative Materials - Papers
Publication Type :
Electronic Resource
Accession number :
edsoai.on1298579625
Document Type :
Electronic Resource