Dynamic stability of active sites in hydr(oxy)oxides for the oxygen evolution reaction

被引:2
|
作者
Dong Young Chung
Pietro P. Lopes
Pedro Farinazzo Bergamo Dias Martins
Haiying He
Tomoya Kawaguchi
Peter Zapol
Hoydoo You
Dusan Tripkovic
Dusan Strmcnik
Yisi Zhu
Soenke Seifert
Sungsik Lee
Vojislav R. Stamenkovic
Nenad M. Markovic
机构
[1] Argonne National Laboratory,Materials Science Division
[2] Valparaiso University,Department of Physics and Astronomy
[3] University of Belgrade,ICTM
[4] Argonne National Laboratory,Department of Electrochemistry
来源
Nature Energy | 2020年 / 5卷
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摘要
The poor activity and stability of electrode materials for the oxygen evolution reaction are the main bottlenecks in the water-splitting reaction for H2 production. Here, by studying the activity–stability trends for the oxygen evolution reaction on conductive M1OxHy, Fe–M1OxHy and Fe–M1M2OxHy hydr(oxy)oxide clusters (M1 = Ni, Co, Fe; M2 = Mn, Co, Cu), we show that balancing the rates of Fe dissolution and redeposition over a MOxHy host establishes dynamically stable Fe active sites. Together with tuning the Fe content of the electrolyte, the strong interaction of Fe with the MOxHy host is the key to controlling the average number of Fe active sites present at the solid/liquid interface. We suggest that the Fe–M adsorption energy can therefore serve as a reaction descriptor that unifies oxygen evolution reaction catalysis on 3d transition-metal hydr(oxy)oxides in alkaline media. Thus, the introduction of dynamically stable active sites extends the design rules for creating active and stable interfaces.
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页码:222 / 230
页数:8
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