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Validation of H2O2-mediated pathway model for elucidating oxygen reduction mechanism: Experimental evidences and theoretical simulations
Yin, Fengjun1,3; Liu, Yuan1; Wang, Sha1; Wang, Chuan2; Liu, Hong1
2019-08-01
摘要Oxygen reduction reaction (ORR) on an electrode is a multi-step process that involves both H2O and H2O2 as final products, and the mechanism focusing on the productions of them has yet to be elucidated. In this study, simplifying the multi-step process of ORR by means of rate-limiting step (RLS) led to a H2O2-mediated pathway model. This model accounts for the productions of H2O and H2O2 by the H2O2-mediated strategy existing in 2 x 2e pathway. The model links the overall reaction with RLS and serves to establish the electrochemical kinetic equations of sub-processes. A tending degree (R-H2O2) quantifying the "tendency" toward H2O and H2O2 was proposed. Finally, a mathematic approach based on the H(2)O(2-)mediated strategy are formed and well account for two common ORR behaviors: i) H2O2 is inevitably produced on most of the ORR catalysts, including Pt-based catalysts, and ii) the tendency is regulable from external factors rather than merely determined by the intrinsic properties of catalysts. Furthermore, this model is fully validated by the kinetic simulations of the ORR behaviors in the rotating ring-disk electrode (RRDE) system. This study opens a way to advance the ORR applications by regulating the tendency, and may facilitate the comprehensive understanding of ORR mechanism. (C) 2019 Published by Elsevier Ltd.
关键词Oxygen reduction reaction H2O2-Mediated strategy Pathway model Tendency Electrochemical kinetics
DOI10.1016/j.electacta.2019.04.155
发表期刊ELECTROCHIMICA ACTA
ISSN0013-4686
卷号313页码:378-388
收录类别SCI
WOS记录号WOS:000470236500040
语种英语