Understanding hydrogen electrocatalysis by probing the hydrogen-bond network of water at the electrified Pt–solution interface

被引:0
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作者
Qiang Sun
Nicholas J. Oliveira
Soonho Kwon
Sergiy Tyukhtenko
Jason J. Guo
Nathalie Myrthil
Steven A. Lopez
Ian Kendrick
Sanjeev Mukerjee
Lu Ma
Steven N. Ehrlich
Jingkun Li
William A. Goddard
Yushan Yan
Qingying Jia
机构
[1] Northeastern University,Department of Chemistry and Chemical Biology
[2] University of Delaware,Center for Clean Hydrogen, Department of Chemical and Biomolecular Engineering
[3] California Institute of Technology,Liquid Sunlight Alliance (LiSA) and Materials and Process Simulation Center (MSC)
[4] Northeastern University,Center for Drug Discovery and Departments of Pharmaceutical Sciences and Chemistry and Chemical Biology
[5] Northeastern University,Barnett Institute for Chemical and Biological Analysis
[6] Brookhaven National Laboratory,National Synchrotron Light Source II
[7] East China University of Science and Technology,School of Chemistry and Molecular Engineering
[8] Plug Power Inc,undefined
来源
Nature Energy | 2023年 / 8卷
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摘要
Rational construction of the electrode–solution interface where electrochemical processes occur is of paramount importance in electrochemistry. Efforts to gain better control and understanding of the interface have been hindered by lack of probing methods. Here we show that the hydrogen evolution and oxidation reactions (HER/HOR) catalysed by platinum in base can be promoted by introduction of N-methylimidazoles at the platinum–water interface. In situ spectroscopic characterization together with simulations indicate that the N-methylimidazoles facilitate diffusion of hydroxides across the interface by holding the second layer of water close to platinum surfaces, thereby promoting the HER/HOR. We thus propose that the HER/HOR kinetics of platinum in acid and base is governed by diffusion of protons and hydroxides, respectively, through the hydrogen-bond network of interfacial water by the Grotthuss mechanism. Moreover, we demonstrate a 40% performance improvement of an anion exchange membrane electrolyser by adding 1,2-dimethylimidazole into the alkali fed into its platinum cathode.
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页码:859 / 869
页数:10
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