Quantum-to-Classical Transition of Proton Transfer in Potential-Induced Dioxygen Reduction

We report an observation of a quantum tunneling effect in a proton-transfer (PT) during potential-induced transformation of dioxygen on a platinum electrode in a low overpotential (η) region at 298 K. However, this quantum process is converted to the classical PT scheme in the high η region. Therefo...

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Veröffentlicht in:Physical review letters 2018-12, Vol.121 (23), p.236001-236001, Article 236001
Hauptverfasser: Sakaushi, Ken, Lyalin, Andrey, Taketsugu, Tetsuya, Uosaki, Kohei
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Sprache:eng
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Zusammenfassung:We report an observation of a quantum tunneling effect in a proton-transfer (PT) during potential-induced transformation of dioxygen on a platinum electrode in a low overpotential (η) region at 298 K. However, this quantum process is converted to the classical PT scheme in the high η region. Therefore, there is a quantum-to-classical transition of the PT (QCT-PT) process as a function of the potential, which is confirmed by theoretical analysis. This observation indicates that the quantum tunneling governs the multistep electron-proton-driven transformation of dioxygen in the low η condition.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.121.236001