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Visualizing the role of applied voltage in non-metal electrocatalysts.

Authors :
Wang, Ziyuan
Chen, Jun
Ni, Chenwei
Nie, Wei
Li, Dongfeng
Ta, Na
Zhang, Deyun
Sun, Yimeng
Sun, Fusai
Li, Qian
Li, Yuran
Chen, Ruotian
Bu, Tiankai
Fan, Fengtao
Li, Can
Source :
National Science Review. Jun2023, Vol. 10 Issue 6, p1-10. 10p.
Publication Year :
2023

Abstract

Understanding how applied voltage drives the electrocatalytic reaction at the nanoscale is a fundamental scientific problem, particularly in non-metallic electrocatalysts, due to their low intrinsic carrier concentration. Herein, using monolayer molybdenum disulfide (MoS2) as a model system of non-metallic catalyst, the potential drops across the basal plane of MoS2 (ΔVsem) and the electric double layer (ΔVedl) are decoupled quantitatively as a function of applied voltage through in-situ surface potential microscopy. We visualize the evolution of the band structure under liquid conditions and clarify the process of EF keeping moving deep into Ec, revealing the formation process of the electrolyte gating effect. Additionally, electron transfer (ET) imaging reveals that the basal plane exhibits high ET activity, consistent with the results of surface potential measurements. The potential-dependent behavior of kf and ns in the ET reaction are further decoupled based on the measurements of ΔVsem and ΔVedl. Comparing the ET and hydrogen evolution reaction imaging results suggests that the low electrocatalytic activity of the basal plane is mainly due to the absence of active sites, rather than its electron transfer ability. This study fills an experimental gap in exploring driving forces for electrocatalysis at the nanoscale and addresses the long-standing issue of the inability to decouple charge transfer from catalytic processes. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20955138
Volume :
10
Issue :
6
Database :
Academic Search Index
Journal :
National Science Review
Publication Type :
Academic Journal
Accession number :
169851105
Full Text :
https://doi.org/10.1093/nsr/nwad166