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Observation of H-2 Evolution and Electrolyte Diffusion on MoS2 Monolayer by In Situ Liquid-Phase Transmission Electron Microscopy

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Title
Observation of H-2 Evolution and Electrolyte Diffusion on MoS2 Monolayer by In Situ Liquid-Phase Transmission Electron Microscopy
Author(s)
Jihoon Kim; Park, Anseong; Joodeok Kim; Kwak, Seung Jae; Lee, Jae Yoon; Lee, Donghoon; Kim, Sebin; Back Kyu Choi; Sungin Kim; Jimin Kwag; Kim, Younhwa; Jeon, Sungho; Lee, Won Chul; Taeghwan Hyeon; Lee, Chul-Ho; Lee, Won Bo; Jungwon Park
Publication Date
2022-11
Journal
ADVANCED MATERIALS, v.34, no.45
Publisher
WILEY-V C H VERLAG GMBH
Abstract
Unit-cell-thick MoS2 is a promising electrocatalyst for the hydrogen evolution reaction (HER) owing to its tunable catalytic activity, which is determined based on the energetics and molecular interactions of different types of HER active sites. Kinetic responses of MoS2 active sites, including the reaction onset, diffusion of the electrolyte and H-2 bubbles, and continuation of these processes, are important factors affecting the catalytic activity of MoS2. Investigating these factors requires a direct real-time analysis of the HER occurring on spatially independent active sites. Herein, the H-2 evolution and electrolyte diffusion on the surface of MoS2 are observed in real time by in situ electrochemical liquid-phase transmission electron microscopy (LPTEM). Time-dependent LPTEM observations reveal that different types of active sites are sequentially activated under the same conditions. Furthermore, the electrolyte flow to these sites is influenced by the reduction potential and site geometry, which affects the bubble detachment and overall HER activity of MoS2.
URI
https://pr.ibs.re.kr/handle/8788114/12600
DOI
10.1002/adma.202206066
ISSN
0935-9648
Appears in Collections:
Center for Nanoparticle Research(나노입자 연구단) > 1. Journal Papers (저널논문)
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