4.8 Article

Voltage- and time-dependent valence state transition in cobalt oxide catalysts during the oxygen evolution reaction

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NATURE COMMUNICATIONS
卷 11, 期 1, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41467-020-15925-2

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资金

  1. Transformational Technologies for Clean Energy and Demonstration, Strategic Priority Research Program of the Chinese Academy of Sciences [XDA2100000]
  2. K. C. Wong Education Foundation [GJTD-2018-10]
  3. Youth Innovation Promotion Association, Chinese Academy of Science [2014237]
  4. National Science Foundation of China [21876183, 21905295]
  5. Instrument and Equipment Development Program Chinese Academy of Science [YJKYYQ20180066]
  6. Max Planck-POSTECH-Hsinchu Center for Complex Phase Materials

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The ability to determine the electronic structure of catalysts during electrochemical reactions is highly important for identification of the active sites and the reaction mechanism. Here we successfully applied soft X-ray spectroscopy to follow in operando the valence and spin state of the Co ions in Li2Co2O4 under oxygen evolution reaction (OER) conditions. We have observed that a substantial fraction of the Co ions undergo a voltage-dependent and time-dependent valence state transition from Co3+ to Co4+ accompanied by spontaneous delithiation, whereas the edge-shared Co-O network and spin state of the Co ions remain unchanged. Density functional theory calculations indicate that the highly oxidized Co4+ site, rather than the Co3+ site or the oxygen vacancy site, is mainly responsible for the high OER activity. Determining catalyst electronic structures during electrochemical reactions is crucial to understand mechanisms. Here authors perform in operando soft X-ray spectroscopy on a cobalt oxide catalyst during O-2 evolution and observe voltage and time-dependent valence state transitions.

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