Mechanistic insight into the active centers of single/dual-atom Ni/Fe-based oxygen electrocatalysts

The development of high performance dual-site single-atom catalysts is a promising research direction. Here, the authors report structural dynamics of dual-site nickel-iron single-atom oxygen electrocatalysts under reaction conditions, and proposes a dual-site pathway for the water oxidation reactio...

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Main Authors: Wenchao Wan, Yonggui Zhao, Shiqian Wei, Carlos A. Triana, Jingguo Li, Andrea Arcifa, Christopher S. Allen, Rui Cao, Greta R. Patzke
Format: Article
Language:English
Published: Nature Portfolio 2021-09-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-021-25811-0
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author Wenchao Wan
Yonggui Zhao
Shiqian Wei
Carlos A. Triana
Jingguo Li
Andrea Arcifa
Christopher S. Allen
Rui Cao
Greta R. Patzke
author_facet Wenchao Wan
Yonggui Zhao
Shiqian Wei
Carlos A. Triana
Jingguo Li
Andrea Arcifa
Christopher S. Allen
Rui Cao
Greta R. Patzke
author_sort Wenchao Wan
collection DOAJ
description The development of high performance dual-site single-atom catalysts is a promising research direction. Here, the authors report structural dynamics of dual-site nickel-iron single-atom oxygen electrocatalysts under reaction conditions, and proposes a dual-site pathway for the water oxidation reaction.
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spelling doaj.art-ccd66d95d09640c19104aedf94babd0a2022-12-21T23:38:34ZengNature PortfolioNature Communications2041-17232021-09-0112111310.1038/s41467-021-25811-0Mechanistic insight into the active centers of single/dual-atom Ni/Fe-based oxygen electrocatalystsWenchao Wan0Yonggui Zhao1Shiqian Wei2Carlos A. Triana3Jingguo Li4Andrea Arcifa5Christopher S. Allen6Rui Cao7Greta R. Patzke8Department of Chemistry, University of ZurichDepartment of Chemistry, University of ZurichSchool of Chemistry, Resource and Environment, Leshan Normal UniversityDepartment of Chemistry, University of ZurichDepartment of Chemistry, University of ZurichEmpa, Swiss Federal Institute for Materials Science and TechnologyElectron Physical Science Imaging Center, Diamond Light Source LtdStanford Synchrotron Radiation Lightsource, SLAC National Accelerator LaboratoryDepartment of Chemistry, University of ZurichThe development of high performance dual-site single-atom catalysts is a promising research direction. Here, the authors report structural dynamics of dual-site nickel-iron single-atom oxygen electrocatalysts under reaction conditions, and proposes a dual-site pathway for the water oxidation reaction.https://doi.org/10.1038/s41467-021-25811-0
spellingShingle Wenchao Wan
Yonggui Zhao
Shiqian Wei
Carlos A. Triana
Jingguo Li
Andrea Arcifa
Christopher S. Allen
Rui Cao
Greta R. Patzke
Mechanistic insight into the active centers of single/dual-atom Ni/Fe-based oxygen electrocatalysts
Nature Communications
title Mechanistic insight into the active centers of single/dual-atom Ni/Fe-based oxygen electrocatalysts
title_full Mechanistic insight into the active centers of single/dual-atom Ni/Fe-based oxygen electrocatalysts
title_fullStr Mechanistic insight into the active centers of single/dual-atom Ni/Fe-based oxygen electrocatalysts
title_full_unstemmed Mechanistic insight into the active centers of single/dual-atom Ni/Fe-based oxygen electrocatalysts
title_short Mechanistic insight into the active centers of single/dual-atom Ni/Fe-based oxygen electrocatalysts
title_sort mechanistic insight into the active centers of single dual atom ni fe based oxygen electrocatalysts
url https://doi.org/10.1038/s41467-021-25811-0
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