Metallic Vanadium Disulfide Nanosheets as a Platform Material for Multifunctional Electrode Applications

Nanothick metallic transition metal dichalcogenides such as VS2 are essential building blocks for constructing next-generation electronic and energy-storage applications, as well as for exploring unique physical issues associated with the dimensionality effect. However, such two-dimensional (2D) lay...

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Veröffentlicht in:Nano letters 2017-08, Vol.17 (8), p.4908-4916
Hauptverfasser: Ji, Qingqing, Li, Cong, Wang, Jingli, Niu, Jingjing, Gong, Yue, Zhang, Zhepeng, Fang, Qiyi, Zhang, Yu, Shi, Jianping, Liao, Lei, Wu, Xiaosong, Gu, Lin, Liu, Zhongfan, Zhang, Yanfeng
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Sprache:eng
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Zusammenfassung:Nanothick metallic transition metal dichalcogenides such as VS2 are essential building blocks for constructing next-generation electronic and energy-storage applications, as well as for exploring unique physical issues associated with the dimensionality effect. However, such two-dimensional (2D) layered materials have yet to be achieved through either mechanical exfoliation or bottom-up synthesis. Herein, we report a facile chemical vapor deposition route for direct production of crystalline VS2 nanosheets with sub-10 nm thicknesses and domain sizes of tens of micrometers. The obtained nanosheets feature spontaneous superlattice periodicities and excellent electrical conductivities (∼3 × 103 S cm–1), which has enabled a variety of applications such as contact electrodes for monolayer MoS2 with contact resistances of ∼1/4 to that of Ni/Au metals, and as supercapacitor electrodes in aqueous electrolytes showing specific capacitances as high as 8.6 × 102 F g–1. This work provides fresh insights into the delicate structure–property relationship and the broad application prospects of such metallic 2D materials.
ISSN:1530-6984
1530-6992
DOI:10.1021/acs.nanolett.7b01914