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酚类化合物在单电子电化学和均相氧化中与分子内胺驱动的质子转移偶联的重组能和指前因子。

Reorganization energies and pre-exponential factors in the one-electron electrochemical and homogeneous oxidation of phenols coupled with an intramolecular amine-driven proton transfer.

机构信息

Laboratoire d'Electrochimie Moléculaire, Unité Mixte de Recherche Université-CNRS No 7591, Université Paris Diderot, Bâtiment Lavoisier, 15 rue Jean de Baïf, 75205 Paris Cedex 13, France.

出版信息

Phys Chem Chem Phys. 2010 Oct 28;12(40):13061-9. doi: 10.1039/c0cp00017e. Epub 2010 Aug 5.

Abstract

Temperature variations of the kinetics of the electrochemical and homogeneous oxidation of the title compounds give rise to Arrhenius plots, the slopes of which give access to the heavy-atom (including solvent) reorganization energies. Information on the role of proton transfer in the dynamics of the concerted proton-electron transfer reaction (CPET) is potentially contained in the pre-exponential factor. Previous analyses of the problem were based on equalling the pre-exponential factor in the absence of barrier for proton transfer with the collision frequency. Taking into account that the reaction may take place at various distances from the electrode surface increases the value of this limiting pre-exponential factor. Strategies are discussed for evaluating the impact of proton transfer in the CPET kinetics by comparing the experimental pre-exponential factor with pre-exponential factors characterizing simple outersphere electron transfers.

摘要

标题化合物的电化学和均相氧化动力学的温度变化导致阿仑尼乌斯图,其斜率可获得重原子(包括溶剂)重组能。质子转移在协同质子-电子转移反应(CPET)动力学中的作用的信息可能包含在指数前因子中。以前对这个问题的分析是基于将没有质子转移势垒的指数前因子与碰撞频率相等。考虑到反应可能在离电极表面不同的距离处发生,这会增加这个极限指数前因子的值。通过比较实验指数前因子与描述简单外壳电子转移的指数前因子,讨论了评估质子转移对 CPET 动力学影响的策略。

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