首页> 外文期刊>The Journal of Chemical Physics >Introducing the mean field approximation to CDFT/MMpol method: Statistically converged equilibrium and nonequilibrium free energy calculation for electron transfer reactions in condensed phases
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Introducing the mean field approximation to CDFT/MMpol method: Statistically converged equilibrium and nonequilibrium free energy calculation for electron transfer reactions in condensed phases

机译:引入CDFT / MMPOL方法的平均场近似:静音相的电子转移反应的统计收敛平衡和非空转能量计算

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摘要

A new theoretical method to study electron transfer reactions in condensed phases is proposed by introducing the mean-field approximation into the constrained density functional theory/molecular mechanical method with a polarizable force field (CDFT/MMpol). The method enables us to efficiently calculate the statistically converged equilibrium and nonequilibrium free energies for diabatic states in an electron transfer reaction by virtue of the mean field approximation that drastically reduces the number of CDFT calculations. We apply the method to the system of a formanilide-anthraquinone dyad in dimethylsulfoxide, in which charge recombination and cis-trans isomerization reactions can take place, previously studied by the CDFT/MMpol method. Quantitative agreement of the driving force and the reorganization energy between our results and those from the CDFT/MMpol calculation and the experimental estimates supports the utility of our method. The calculated nonequilibrium free energy is analyzed by its decomposition into several contributions such as those from the averaged solute-solvent electrostatic interactions and the explicit solvent electronic polarization. The former contribution is qualitatively well described by a model composed of a coarse-grained dyad in a solution in the linear response regime. The latter contribution reduces the reorganization energy by more than 10 kcal/mol. Published by AIP Publishing.
机译:提出了一种研究冷凝相中电子转移反应的新的理论方法,提出了一种用可极化力场(CDFT / MMPOL)的受约束密度泛函理论/分子机械方法的平均场近似。该方法使我们能够在电子转移反应中有效地计算典型地收敛的平衡和非QuidibiRivium和非预测能量,以通过大幅降低CDFT计算的数量的平均场近似来计算电子转移反应中的糖尿病状态。我们将该方法应用于二甲基磺酰氧化物中的甲苯胺 - 蒽醌二元的系统,其中可以通过CDFT / MMPOL方法研究电荷重组和CIS-Trans异构化反应。我们的结果与来自CDFT / MMPOL计算的结果与重组能量的定量协议,以及实验估计值支持我们方法的效用。通过将计算出的非自由能量分解成几种贡献,例如来自平均溶质溶剂静电相互作用和显式溶剂电子极化的贡献。前一种贡献由在线性响应制度的溶液中的粗粒二元组成的模型来定义良好地描述。后一种贡献将重组能量降低超过10kcal / mol。通过AIP发布发布。

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