Atomic Reconstruction and Oxygen Evolution Reaction of Mn3O4Nanoparticles

  • Yoon, Sangmoon
  • Seo, Hongmin
  • Jin, Kyoungsuk
  • Kim, Hyoung Gyun
  • Lee, Seung-Yong
  • 외 9명
Citations

WEB OF SCIENCE

11
Citations

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11

초록

Understanding the chemical states of individual surface atoms and their arrangements is essential for addressing several current issues such as catalysis, energy stroage/conversion, and environmental protection. Here, we exploit a profile imaging technique to understand the correlation between surface atomic structures and the oxygen evolution reaction (OER) in Mn3O4 nanoparticles. We image surface structures of Mn3O4 nanoparticles and observe surface reconstructions in the (110) and (101) planes. Mn3+ ions at the surface, which are commonly considered as the active sites in OER, disappear from the reconstructed planes, whereas Mn3+ ions are still exposed at the edges of nanoparticles. Our observations suggest that surface reconstructions can deactivate low-index surfaces of Mn oxides in OER. These structural and chemical observations are further validated by density functional theory calculations. This work shows why atomic-scale characterization of surface structures is crucial for a molecular-level understanding of a chemical reaction in oxide nanoparticles.

키워드

EFFICIENT WATER OXIDATIONCATALYSTRESOLUTIONNANOSCALEOXIDES
제목
Atomic Reconstruction and Oxygen Evolution Reaction of Mn3O4Nanoparticles
저자
Yoon, SangmoonSeo, HongminJin, KyoungsukKim, Hyoung GyunLee, Seung-YongJo, JanghyunCho, Kang HeeRyu, JinseokYoon, AramKim, Young-WoonZuo, Jian-MinKwon, Young-KyunNam, Ki TaeKim, Miyoung
DOI
10.1021/acs.jpclett.2c01638
발행일
2022-09
유형
Article
저널명
Journal of Physical Chemistry Letters
13
35
페이지
8336 ~ 8343