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Water induced ultrathin Mo2C nanosheets with high-density grain boundaries for enhanced hydrogen evolution

Authors :
Yang Yang
Yumin Qian
Zhaoping Luo
Haijing Li
Lanlan Chen
Xumeng Cao
Shiqiang Wei
Bo Zhou
Zhenhua Zhang
Shuai Chen
Wenjun Yan
Juncai Dong
Li Song
Wenhua Zhang
Renfei Feng
Jigang Zhou
Kui Du
Xiuyan Li
Xian-Ming Zhang
Xiujun Fan
Source :
Nature Communications. 13
Publication Year :
2022
Publisher :
Springer Science and Business Media LLC, 2022.

Abstract

Grain boundary controlling is an effective approach for manipulating the electronic structure of electrocatalysts to improve their hydrogen evolution reaction performance. However, probing the direct effect of grain boundaries as highly active catalytic hot spots is very challenging. Herein, we demonstrate a general water-assisted carbothermal reaction strategy for the construction of ultrathin Mo2C nanosheets with high-density grain boundaries supported on N-doped graphene. The polycrystalline Mo2C nanosheets are connected with N-doped graphene through Mo–C bonds, which affords an ultra-high density of active sites, giving excellent hydrogen evolution activity and superior electrocatalytic stability. Theoretical calculations reveal that the dz2 orbital energy level of Mo atoms is controlled by the MoC3 pyramid configuration, which plays a vital role in governing the hydrogen evolution activity. The dz2 orbital energy level of metal atoms exhibits an intrinsic relationship with the catalyst activity and is regarded as a descriptor for predicting the hydrogen evolution activity.

Details

ISSN :
20411723
Volume :
13
Database :
OpenAIRE
Journal :
Nature Communications
Accession number :
edsair.doi...........24e18677ecf5f5d2dd29b324aca7d2d0
Full Text :
https://doi.org/10.1038/s41467-022-34976-1