中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Controlled growth of MoS2 nanopetals and their hydrogen evolution performance

文献类型:期刊论文

作者Ling, L; Wang, C; Zhang, K; Li, TT; Tang, L; Li, CW; Wang, LJ; Xu, YC; Song, QJ; Yao, YG(姚亚刚)
刊名RSC ADVANCES
出版日期2016
卷号6期号:22
通讯作者Song, QJ ; Yao, YG(姚亚刚)
英文摘要Edge-oriented MoS2 nanopetals complexed with basal-oriented MoS2 thin films have been mildly grown through a simple atmospheric pressure chemical vapor deposition (APCVD) process with the reaction of MoO3 and S. Dense nanopetals with hexagonal structures exposed numerous chemically reactive edge sites. The roles of growth temperature, time and S/MoO3 mass ratio have been carefully investigated to tune the morphology and density of the as-grown products. Importantly, the carbon nanotube (CNT) films were used as substrates for growing MoS2 nanopetals. The MoS2/CNT composites, used directly as working electrodes, showed remarkable and stable electrocatalytic activity in the hydrogen evolution reaction (HER), as manifested with a low onset overpotential of similar to 100 mV and a small Tafel slope of 49.5 mV per decade. The development of the MoS2/CNT electrode provides a promising way to fabricate other multifunctional electrodes.
关键词[WOS]CHEMICAL-VAPOR-DEPOSITION ; ACTIVE EDGE SITES ; MONO LAYER MOS2 ; MONOLAYER MOS2 ; EFFICIENT ELECTROCATALYSTS ; 2-DIMENSIONAL MATERIALS ; MOLYBDENUM-DISULFIDE ; LARGE-AREA ; NANOSHEETS ; CRYSTALLINE
收录类别SCI ; EI
语种英语
WOS记录号WOS:000370717900072
源URL[http://ir.sinano.ac.cn/handle/332007/4780]  
专题苏州纳米技术与纳米仿生研究所_先进材料研究部_姚亚刚团队
推荐引用方式
GB/T 7714
Ling, L,Wang, C,Zhang, K,et al. Controlled growth of MoS2 nanopetals and their hydrogen evolution performance[J]. RSC ADVANCES,2016,6(22).
APA Ling, L.,Wang, C.,Zhang, K.,Li, TT.,Tang, L.,...&Yao, YG.(2016).Controlled growth of MoS2 nanopetals and their hydrogen evolution performance.RSC ADVANCES,6(22).
MLA Ling, L,et al."Controlled growth of MoS2 nanopetals and their hydrogen evolution performance".RSC ADVANCES 6.22(2016).

入库方式: OAI收割

来源:苏州纳米技术与纳米仿生研究所

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