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解析 NiOOH 上电催化醇和醛氧化的两条途径。

Unraveling Two Pathways for Electrochemical Alcohol and Aldehyde Oxidation on NiOOH.

机构信息

Department of Chemistry, University of Wisconsin-Madison, Madison, Wisconsin 53706, United States.

Department of Chemistry, Yale University, New Haven, Connecticut 06520, United States.

出版信息

J Am Chem Soc. 2020 Dec 23;142(51):21538-21547. doi: 10.1021/jacs.0c10924. Epub 2020 Dec 15.

Abstract

Selective oxidation of alcohols to their corresponding aldehyde or carboxylic acid is one of the most important classes of organic synthesis reactions. In addition, electrochemical alcohol oxidation is considered a viable anode reaction that can be paired with H evolution or other reductive fuel production reactions in electrochemical and photoelectrochemical cells. NiOOH, a material that has been extensively studied as an oxygen evolution catalyst, is among the most promising electrocatalysts for selective alcohol oxidation. Electrochemical alcohol oxidation by NiOOH has been understood since the 1970s to proceed through a hydrogen atom transfer to NiOOH. In this study, we establish that there is a second, more dominant general alcohol oxidation pathway on NiOOH enabled at more positive potentials. Using a three-step electrochemical procedure we developed, we deconvoluted the currents corresponding to these two pathways for various alcohols and aldehydes. The results show that alcohols and aldehydes have a distinct difference in their respective preferences for the two oxidation pathways. Our three-step electrochemical procedure also allowed us to evaluate the Ni valence involved with the different oxidation pathways to elucidate their mechanistic differences. Using these experimental results coupled with a computational investigation, we propose that the new pathway entails hydride transfer from the substrate to Ni sites in NiOOH. This study offers an essential foundation to understand various oxidative electrochemical dehydrogenation reactions on oxide and hydroxide-based catalytic electrodes.

摘要

醇的选择性氧化为相应的醛或羧酸是最重要的有机合成反应之一。此外,电化学醇氧化被认为是一种可行的阳极反应,可以与析氢反应或电化学和光电化学电池中的其他还原燃料生产反应相匹配。NiOOH 作为一种广泛研究的氧析出催化剂,是最有前途的选择性醇氧化电催化剂之一。自 20 世纪 70 年代以来,人们就已经知道 NiOOH 通过氢原子转移来进行电化学醇氧化。在这项研究中,我们确定在更正的电势下,NiOOH 上存在第二种更为主导的通用醇氧化途径。我们通过开发的三步电化学程序,对各种醇和醛的这两种途径的电流进行了去卷积。结果表明,醇和醛在两种氧化途径的偏好上存在明显差异。我们的三步电化学程序还使我们能够评估不同氧化途径中涉及的 Ni 价态,以阐明它们的机制差异。使用这些实验结果和计算研究,我们提出新途径需要底物向 NiOOH 中的 Ni 位转移氢化物。这项研究为理解基于氧化物和氢氧化物的催化电极上的各种氧化电化学脱氢反应提供了重要的基础。

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