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A Bifunctional Electrocatalyst for Oxygen Evolution and Oxygen Reduction Reactions in Water

机译:水中氧气析出和氧还原反应的双功能电催化剂

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摘要

Oxygen reduction and water oxidation are two key processes in fuel cell applications. The oxidation of water to dioxygen is a 4 H+/4 e process, while oxygen can be fully reduced to water by a 4 e/4 H+ process or partially reduced by fewer electrons to reactive oxygen species such as H2O2 and O2 . We demonstrate that a novel manganese corrole complex behaves as a bifunctional catalyst for both the electrocatalytic generation of dioxygen as well as the reduction of dioxygen in aqueous media. Furthermore, our combined kinetic, spectroscopic, and electrochemical study of manganese corroles adsorbed on different electrode materials (down to a submolecular level) reveals mechanistic details of the oxygen evolution and reduction processes.
机译:氧还原和水氧化是燃料电池应用中的两个关键过程。水氧化成双氧是4 H + / 4 e -过程,而氧可以通过4 e - / 4 H + 过程或被较少的电子部分还原为活性氧,例如H2O2和O2 -。我们证明了一种新颖的锰盐配合物表现为双功能催化剂,既可用于电催化生成双氧,又可在水性介质中还原双氧。此外,我们对吸附在不同电极材料上(低至亚分子水平)的锰钴的动力学,光谱和电化学研究进行了综合研究,揭示了氧气释放和还原过程的机理细节。

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