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Intrinsic reactivity and driving force dependence in concerted proton–electron transfers to water illustrated by phenol oxidation

机译:质子-电子向水中的协调转移中的内在反应性和驱动力依赖性,以酚氧化为例

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摘要

Three experimental techniques, laser flash photolysis, redox catalysis, and stopped-flow, were used to investigate the variation of the oxidation rate constant of phenol in neat water with the driving force offered by a series of electron acceptors. Taking into account a result previously obtained with a low–driving force electron acceptor thus allowed scanning more than half an electron-volt driving force range. Variation of the rate constant with pH showed the transition between a direct phenol oxidation reaction at low pH, where the rate constant does not vary with pH, and a stepwise reaction involving the prior deprotonation of phenol by OH-, characterized by a unity-slope variation. Analyses of the direct oxidation kinetics, based on its variation with the driving force and on the determination of H/D isotope effects, ruled out a stepwise mechanism in which electron transfer is followed by the deprotonation of the initial cation radical at the benefit of a pathway in which proton and electron are transferred concertedly. Derivation of the characteristics of counterdiffusion in termolecular reactions allowed showing that the concerted process is under activation control. It is characterized by a remarkably small reorganization energy, in line with the electrochemical counterpart of the reaction, underpinning the very peculiar behavior of water as proton acceptor when it is used as the solvent.
机译:采用三种实验技术,激光闪光光解,氧化还原催化和停止流动,研究了一系列电子受体提供的驱动力对纯水中苯酚氧化速率常数的影响。考虑到以前使用低驱动力电子受体获得的结果,因此可以扫描超过一半的电子伏特驱动力范围。速率常数随pH的变化显示了在低pH的直接苯酚氧化反应(其中速率常数不随pH改变)与逐步的反应之间的过渡,该反应涉及先被OH-脱酚的苯酚,其特征是单位斜率变异。基于直接氧化动力学随驱动力的变化以及对H / D同位素效应的确定,对直接氧化动力学的分析排除了一种逐步机理,在该逐步机理中,电子转移后,初始阳离子自由基的去质子化有利于质子和电子协调传递的途径。分子反应中反扩散特征的推导表明,协同过程处于活化控制之下。它的特点是重组反应能非常小,与反应的电化学反应相符,可增强水在用作溶剂时作为质子受体的独特行为。

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