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Calculation of Vibronic Couplings for Phenoxyl/Phenol and Benzyl/Toluene Self-Exchange Reactions: Implications for Proton-Coupled Electron Transfer Mechanisms

机译:苯酚/苯酚和苄基/甲苯自交换反应的振动偶合的计算:质子耦合电子转移机理的含义。

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摘要

The vibronic couplings for the phenoxyl/phenol and the benzyl/toluene self-exchange reactions are calculated with a semiclassical approach,in which all electrons and the transferring hydrogen nucleus are treated quantum mechanically.In this formulation,the vibronic coupling is the Hamiltonian matrix element between the reactant and product mixed electronic-proton vibrational wavefunctions.The magnitude of the vibronic coupling and its dependence on the proton donor-acceptor distance can significantly impact the rates and kinetic isotope effects,as well as the temperature dependences,of proton-coupled electron transfer reactions.Both of these self-exchange reactions are vibronically nonadiabatic with respect to a solvent environment at room temperature,but the proton tunneling is electronically nonadiabatic for the phenoxyl/phenol reaction and electronically adiabatic for the benzyl/toluene reaction.For the phenoxyl/ phenol system,the electrons are unable to rearrange fast enough to follow the proton motion on the electronically adiabatic ground state,and the excited electronic state is involved in the reaction.For the benzyl/toluene system,the electrons can respond virtually instantaneously to the proton motion,and the proton moves on the electronically adiabatic ground state.For both systems,the vibronic coupling decreases exponentially with the proton donor-acceptor distance for the range of distances studied.When the transferring hydrogen is replaced with deuterium,the magnitude of the vibronic coupling decreases and the exponential decay with distance becomes faster.Previous studies designated the phenoxyl/phenol reaction as proton-coupled electron transfer and the benzyl/toluene reaction as hydrogen atom transfer.In addition to providing insights into the fundamental physical differences between these two types of reactions,the present analysis provides a new diagnostic for differentiating between the conventionally defined hydrogen atom transfer and proton-coupled electron transfer reactions.
机译:用半经典方法计算苯氧基/苯酚和苄基/甲苯自交换反应的振动偶合,其中所有电子和转移的氢核都经过量子力学处理。在此公式中,振动偶合是哈密顿矩阵元素质子耦合电子的量级及其对质子供体-受体距离的依赖性会显着影响质子耦合电子的速率和动力学同位素效应以及温度依赖性相对于室温下的溶剂环境,这两种自交换反应都是非绝热的,但质子隧穿对于苯氧基/苯酚反应是电子非绝热的,对于苄基/甲苯反应是电子绝热的。苯酚系统,电子无法快速重新排列以至于质子在电子绝热基态上的运动降低,并且激发的电子态参与反应。对于苄基/甲苯系统,电子几乎可以立即对质子运动做出反应,质子在电子绝热基态上运动。对于这两个系统,在所研究的距离范围内,振动耦合随质子供体-受体的距离呈指数下降。当用氘取代转移氢时,振动耦合的幅度减小,并且随着距离的增大,指数衰减变快。研究将苯氧基/苯酚反应称为质子偶合电子转移,将苄基/甲苯反应称为氢原子转移。除了深入了解这两类反应之间的基本物理差异外,本研究还为区分这些反应提供了新的诊断方法。在常规定义的氢原子转移和质子-cou之间进行电子转移反应。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2006年第51期|p.16655-16663|共9页
  • 作者单位

    Contribution from the Department of Chemistry,104 Chemistry Building,Pennsylvania State University,University Park,Pennsylvania 16802;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

  • 入库时间 2022-08-18 03:23:08

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