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以水作为质子受体时,酚类在电化学氧化过程中质子-电子协同转移的证据。三叔丁基苯酚。

Evidence for concerted proton-electron transfer in the electrochemical oxidation of phenols with water as proton acceptor. Tri-tert-butylphenol.

作者信息

Costentin Cyrille, Louault Cyril, Robert Marc, Savéant Jean-Michel

机构信息

Laboratoire d'Electrochimie Moléculaire, Unité Mixte de Recherche Université-CNRS No 7591, Université Paris-Diderot, 75205 Paris Cedex 13, France.

出版信息

J Am Chem Soc. 2008 Nov 26;130(47):15817-9. doi: 10.1021/ja8064914.

Abstract

Proton-coupled electron transfer oxidation of phenols play a prominent role in several natural processes, and one may wonder if their high efficiency is related to the possibility that the electron and proton transfer steps are concerted. The cyclic voltammetric observation of the electrochemical oxidation and reverse reaction has allowed, with the example of 2,4,6-tri-tert-butylphenol in nonbuffered aqueous media, the clear identification of a pathway in which a phenol is directly and reversibly converted into the phenoxyl radical while the generated proton is accepted by a water molecule in a concerted manner. In very basic media, a stepwise mechanism takes place in which the phenol is deprotonated by OH- and the resulting phenoxide ion rapidly oxidized into the phenoxyl radical. As the pH decreases, this pathway progressively shuts down to the advantage of the concerted pathway. The latter assignment is confirmed by the observation of a substantial H/D kinetic isotope effect. At moderately basic pH 10.5, the contributions of the two pathways are about equal and the occurrence of the two competing routes is directly visualized in the cyclic voltammetry response.

摘要

酚类的质子耦合电子转移氧化在多个自然过程中起着重要作用,人们可能会想,它们的高效率是否与电子和质子转移步骤协同进行的可能性有关。通过在非缓冲水性介质中以2,4,6-三叔丁基苯酚为例进行循环伏安法对电化学氧化和逆反应的观察,已明确鉴定出一条途径,即酚以协同方式直接且可逆地转化为酚氧基自由基,同时生成的质子被水分子接受。在非常碱性的介质中,发生逐步机制,其中酚被OH-去质子化,生成的酚盐离子迅速氧化为酚氧基自由基。随着pH值降低,该途径逐渐关闭,有利于协同途径。后者的归属通过观察到显著的H/D动力学同位素效应得到证实。在中等碱性pH 10.5时,两条途径的贡献大致相等,并且在循环伏安响应中直接观察到两条竞争途径的发生。

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