Hatcher Elizabeth, Soudackov Alexander, Hammes-Schiffer Sharon
Department of Chemistry, The Pennsylvania State University, 104 Chemistry Building, University Park, Pennsylvania 16802, USA.
J Phys Chem B. 2005 Oct 6;109(39):18565-74. doi: 10.1021/jp052909f.
Fundamental aspects of proton-coupled electron transfer (PCET) reactions in solution are analyzed with molecular dynamics simulations for a series of model systems. The analysis addresses the impact of the solvent reorganization energy, the proton donor-acceptor mode vibrational frequency, and the distance dependence of the nonadiabatic coupling on the dynamics of the reaction and the magnitude of the rate. The rate for nonadiabatic PCET is expressed in terms of a time-dependent probability flux correlation function. The time dependence of the probability flux correlation function is determined mainly by the solvent reorganization energy and is not significantly influenced by the proton donor-acceptor frequency or the distance dependence of the nonadiabatic coupling. The magnitude of the PCET rate becomes greater as the solvent reorganization energy decreases, the proton donor-acceptor frequency decreases, and the distance dependence of the nonadiabatic coupling increases. The approximations underlying a previously derived analytical PCET rate expression are also investigated. The short-time approximation for the solvent is valid for these types of systems. In addition, solvent damping effects on the proton donor-acceptor motion are not significant on the time scale of the probability flux. The rates calculated from the molecular dynamics simulations agree well with those calculated from the analytical rate expression.
利用分子动力学模拟对一系列模型体系分析了溶液中质子耦合电子转移(PCET)反应的基本方面。该分析探讨了溶剂重组能、质子供体 - 受体模式振动频率以及非绝热耦合的距离依赖性对反应动力学和速率大小的影响。非绝热PCET的速率用一个随时间变化的概率流相关函数表示。概率流相关函数的时间依赖性主要由溶剂重组能决定,并且受质子供体 - 受体频率或非绝热耦合的距离依赖性影响不显著。随着溶剂重组能降低、质子供体 - 受体频率降低以及非绝热耦合的距离依赖性增加,PCET速率的大小变得更大。还研究了先前推导的解析PCET速率表达式所基于的近似。对于这些类型的体系,溶剂的短时近似是有效的。此外,在概率流的时间尺度上,溶剂对质子供体 - 受体运动的阻尼效应不显著。由分子动力学模拟计算得到的速率与由解析速率表达式计算得到的速率吻合良好。