| Literature DB >> 29044864 |
Jingkun Li1, Shraboni Ghoshal1, Michael K Bates1, Todd E Miller1, Veronica Davies1, Eli Stavitski2, Klaus Attenkofer2, Sanjeev Mukerjee1, Zi-Feng Ma3, Qingying Jia1.
Abstract
Realization of the hydrogen economy relies on effective hydrogen production, storage, and utilization. The slow kinetics of hydrogen evolution and oxidation reaction (HER/HOR) in alkaline media limits many practical applications involving hydrogen generation and utilization, and how to overcome this fundamental limitation remains debatable. Here we present a kinetic study of the HOR on representative catalytic systems in alkaline media. Electrochemical measurements show that the HOR rate of Pt-Ru/C and Ru/C systems is decoupled to their hydrogen binding energy (HBE), challenging the current prevailing HBE mechanism. The alternative bifunctional mechanism is verified by combined electrochemical and in situ spectroscopic data, which provide convincing evidence for the presence of hydroxy groups on surface Ru sites in the HOR potential region and its key role in promoting the rate-determining Volmer step. The conclusion presents important references for design and selection of HOR catalysts.Entities:
Keywords: alloys; electrocatalysis; electrochemistry; reaction mechanisms; supported catalysts
Year: 2017 PMID: 29044864 DOI: 10.1002/anie.201708484
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336