Unifying the 2e– and 4e– Reduction of Oxygen on Metal Surfaces

Understanding trends in selectivity is of paramount importance for multi-electron electrochemical reactions. The goal of this work is to address the issue of 2e– versus 4e– reduction of oxygen on metal surfaces. Using a detailed thermodynamic analysis based on density functional theory calculations,...

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Veröffentlicht in:The journal of physical chemistry letters 2012-10, Vol.3 (20), p.2948-2951
Hauptverfasser: Viswanathan, Venkatasubramanian, Hansen, Heine Anton, Rossmeisl, Jan, Nørskov, Jens K
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Sprache:eng
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Zusammenfassung:Understanding trends in selectivity is of paramount importance for multi-electron electrochemical reactions. The goal of this work is to address the issue of 2e– versus 4e– reduction of oxygen on metal surfaces. Using a detailed thermodynamic analysis based on density functional theory calculations, we show that to a first approximation an activity descriptor, ΔG OH*, the free energy of adsorbed OH*, can be used to describe trends for the 2e– and 4e– reduction of oxygen. While the weak binding of OOH* on Au(111) makes it an unsuitable catalyst for the 4e– reduction, this weak binding is optimal for the 2e– reduction to H2O2. We find quite a remarkable agreement between the predictions of the model and experimental results spanning nearly 30 years.
ISSN:1948-7185
1948-7185
DOI:10.1021/jz301476w