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Reactant friendly hydrogen evolution interface based on di-anionic MoS2 surface

delete2020-02-28
delete146
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OA
AI
Z
Zhaoyan Luo
张豪 封面图
张豪 (Hao Zhang)
杨玉琪 封面图
杨玉琪 (Yuqi Yang)
X
Xian Wang
李
李杨 (Li Yang)
J
Jin Zhao
姜
姜政 (Zheng Jiang) *
C
Changpeng Liu
邢
邢巍 (Wei Xing)
葛
葛君杰 (Junjie Ge) *
DOI:10.1038/s41467-020-14980-zdelete
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摘要

摘要

En 中文
Engineering the reaction interface to preferentially attract reactants to inner Helmholtz plane is highly desirable for kinetic advancement of most electro-catalysis processes, including hydrogen evolution reaction (HER). This, however, has rarely been achieved due to the inherent complexity for precise surface manipulation down to molecule level. Here, we build a MoS2 di-anionic surface with controlled molecular substitution of S sites by -OH. We confirm the -OH group endows the interface with reactant dragging functionality, through forming strong non-covalent hydrogen bonding to the reactants (hydronium ions or water). The well-conditioned surface, in conjunction with activated sulfur atoms (by heteroatom metal doping) as active sites, giving rise to up-to-date the lowest over potential and highest intrinsic activity among all the MoS2 based catalysts. The di-anion surface created in this study, with atomic mixing of active sites and reactant dragging functionalities, represents a effective di-functional interface for boosted kinetic performance. H-2 energy as an alternative to fossil fuels requires cost-effective catalysts with fast kinetics for splitting water. Here, authors design MoS2 materials with di-anionic surfaces to improve the electrocatalytic H-2 evolution activities.
Keyword:
OXYGEN REDUCTION
ACTIVE-SITES
CARBON
CATALYSTS
DESIGN
ELECTROCATALYSIS
IDENTIFICATION
NANOSHEETS
STABILITY
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期刊

Nature Communications 封面图
Nature Communications
IF:
15.7
论文数:
9.3W
被引数:
91.2W

机构

C
chinese academy of sciences
学者数:
56.7W
论文数: 45.0W
被引数: 704
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引用论文

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