JOURNAL ARTICLE

Stress‐Transfer‐Induced In Situ Formation of Ultrathin Nickel Phosphide Nanosheets for Efficient Hydrogen Evolution

Shaohai LiNan ZhangXiuqiang XieRafael LuqueYi‐Jun Xu

Year: 2018 Journal:   Angewandte Chemie Vol: 130 (40)Pages: 13266-13269   Publisher: Wiley

Abstract

Abstract Ultrathin two‐dimensional (2D) nanostructures have attracted increasing research interest for energy storage and conversion. However, tackling the key problem of lattice mismatch inducing the instability of ulreathin nanostructures during phase transformations is still a critical challenge. Herein, we describe a facile and scalable strategy for the growth of ultrathin nickel phosphide (Ni 2 P) nanosheets (NSs) with exposed (001) facets. We show that single‐layer functionalized graphene with residual oxygen‐containing groups and a large lateral size contributes to reducing the lattice strain during phosphorization. The resulting nanostructure exhibits remarkable hydrogen evolution activity and good stability under alkaline conditions.

Keywords:
Phosphide Materials science Nanostructure Nickel Nanotechnology Graphene Hydrogen Chemical engineering Chemistry Metallurgy

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26
Cited By
1.12
FWCI (Field Weighted Citation Impact)
40
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0.75
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Citation History

Topics

Electrocatalysts for Energy Conversion
Physical Sciences →  Energy →  Renewable Energy, Sustainability and the Environment
Advanced Photocatalysis Techniques
Physical Sciences →  Energy →  Renewable Energy, Sustainability and the Environment
2D Materials and Applications
Physical Sciences →  Materials Science →  Materials Chemistry
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