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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Dissociative electron transfer in donor-peptide-acceptor systems: Results for kinetic parameters from a density functional/polarizable continuum model
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Dissociative electron transfer in donor-peptide-acceptor systems: Results for kinetic parameters from a density functional/polarizable continuum model

机译:供体-肽-受体系统中的解离电子转移:密度泛函/极化连续体模型的动力学参数结果

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摘要

The main structural and electronic factors playing a role in intramolecular dissociative electron transfer of a simple donor-peptide-acceptor (D-peptide-A) model have been investigated by an integrated computational protocol based on the density functional theory, its time-dependent extension, and the polarizable continuum model. Our results allow us to elucidate the electronic states involved in the process and how they are perturbed by the orientation of the donor and the acceptor with respect to the peptide chain and by the presence of the solvent. We also report a semiquantitative estimation of the rate constant governing electron transfer obtained by a direct quantum mechanical evaluation of all the terms entering the kinetic expressions based on the Marcus theory and its extensions.
机译:通过基于密度泛函理论的集成计算协议研究了简单的供体-肽-受体(D-肽-A)模型的分子内解离电子传递中起主要作用的结构和电子因素,以及可极化的连续体模型。我们的结果使我们能够阐明过程中涉及的电子状态,以及供体和受体相对于肽链的取向以及溶剂的存在如何扰动它们。我们还报告了通过对基于Marcus理论及其扩展的所有动力学输入项进行直接量子力学评估而获得的控制电子传输的速率常数的半定量估计。

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