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对硼化镍/镍异质结构用于高效甲醇电氧化活性的见解。

Insights into the activity of nickel boride/nickel heterostructures for efficient methanol electrooxidation.

作者信息

Qi Yanbin, Zhang Yue, Yang Li, Zhao Yuhan, Zhu Yihua, Jiang Hongliang, Li Chunzhong

机构信息

Key Laboratory for Ultrafine Materials of Ministry of Education, School of Chemical Engineering, East China University of Science and Technology, Shanghai, 200237, China.

Shanghai Engineering Research Center of Hierarchical Nanomaterials, School of Materials Science and Engineering, East China University of Science and Technology, Shanghai, 200237, China.

出版信息

Nat Commun. 2022 Aug 6;13(1):4602. doi: 10.1038/s41467-022-32443-5.

Abstract

Designing efficient catalysts and understanding the underlying mechanisms for anodic nucleophile electrooxidation are central to the advancement of electrochemically-driven technologies. Here, a heterostructure of nickel boride/nickel catalyst is developed to enable methanol electrooxidation into formate with a Faradaic efficiency of nearly 100%. Operando electrochemical impedance spectroscopy and in situ Raman spectroscopy are applied to understand the influence of methanol concentration in the methanol oxidation reaction. High concentrations of methanol inhibit the phase transition of the electrocatalyst to high-valent electro-oxidation products, and electrophilic oxygen species (O* or OH*) formed on the electrocatalyst are considered to be the catalytically active species. Additional mechanistic investigation with density functional theory calculations reveals that the potential-determining step, the formation of *CHO, occurs most favorably on the nickel boride/nickel heterostructure rather than on nickel boride and nickel. These results are highly instructive for the study of other nucleophile-based approaches to electrooxidation reactions and organic electrosynthesis.

摘要

设计高效催化剂并理解阳极亲核试剂电氧化的潜在机制是电化学驱动技术发展的核心。在此,开发了一种硼化镍/镍催化剂的异质结构,以实现甲醇电氧化为甲酸盐,法拉第效率接近100%。采用原位电化学阻抗谱和原位拉曼光谱来理解甲醇浓度在甲醇氧化反应中的影响。高浓度甲醇抑制电催化剂向高价电氧化产物的相变,并且电催化剂上形成的亲电氧物种(O或OH)被认为是催化活性物种。通过密度泛函理论计算进行的额外机理研究表明,决定电位的步骤,即*CHO的形成,在硼化镍/镍异质结构上比在硼化镍和镍上更有利地发生。这些结果对于研究其他基于亲核试剂的电氧化反应和有机电合成方法具有高度指导意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ef2/9357015/72df4cae2ddb/41467_2022_32443_Fig1_HTML.jpg

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