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Nanostructuring Matters: Stabilization of Electrocatalytic Oxygen Evolution Reaction Activity of ZnCo2O4 by Zinc Leaching

Authors
Naveen, Malenahalli H.Bui, Thanh LamLee, LanleeKhan, RizwanChung, WoowonThota, RajuJoo, Sang-WooBang, Jin Ho
Issue Date
Apr-2022
Publisher
American Chemical Society
Keywords
electrocatalyst; nanostructuring; in situ Raman spectroscopy; impedance spectroscopy; surface reconstruction
Citation
ACS Applied Materials and Interfaces, v.14, no.13, pp.15165 - 15175
Indexed
SCIE
SCOPUS
Journal Title
ACS Applied Materials and Interfaces
Volume
14
Number
13
Start Page
15165
End Page
15175
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/111303
DOI
10.1021/acsami.1c24403
ISSN
1944-8244
Abstract
Despite the enormous attention paid to cobalt oxide materials as efficient water splitting electrocatalysts, a deep understanding of their activity discrepancy is still elusive. In this work, we showed that stabilization of the internally generated oxygen evolution reaction (OER) active phase (oxyhydroxide) is crucial for ZnCo2O4 electrocatalysts. A systematic evaluation of the bulk and nanostructured ZnCo2O4 system concomitant with nanostructured Co3O4 showed that leaching of Zn is the driving force behind the near-surface transformation to the oxyhydroxide phase. The relative contribution to this near-surface reconstruction was found to be surface-sensitive. The electrochemical observations combined with Raman and impedance spectroscopy revealed that the good catalytic activity could be attributed to the formation of the cobalt oxyhydroxide phase, which was created by the dissolution of Zn from the nanostructured surface. Moreover, this study sheds light on previous contradicting postulates regarding the discrepancy of the OER activity of ZnCo2O4. Our finding regarding the formation of the OER active phase in spinel Zn-Co oxide will motivate researchers to focus more on the near-surface reconstruction behavior of cobalt-based oxide electrocatalysts in the future.
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