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溶剂电子极化的量子力学/分子力学自由能的变分计算。

Variational calculation of quantum mechanical/molecular mechanical free energy with electronic polarization of solvent.

机构信息

Department of Chemistry, Graduate School of Science, Kyoto University, Kyoto 606-8502, Japan.

出版信息

J Chem Phys. 2012 Apr 7;136(13):134107. doi: 10.1063/1.3699234.

Abstract

Quantum mechanical/molecular mechanical (QM/MM) free energy calculation presents a significant challenge due to an excessive number of QM calculations. A useful approach for reducing the computational cost is that based on the mean field approximation to the QM subsystem. Here, we describe such a mean-field QM/MM theory for electronically polarizable systems by starting from the Hartree product ansatz for the total system and invoking a variational principle of free energy. The MM part is then recast to a classical polarizable model by introducing the charge response kernel. Numerical test shows that the potential of mean force (PMF) thus obtained agrees quantitatively with that obtained from a direct QM/MM calculation, indicating the utility of self-consistent mean-field approximation. Next, we apply the obtained method to prototypical reactions in several qualitatively different solvents and make a systematic comparison of polarization effects. The results show that in aqueous solution the PMF does not depend very much on the water models employed, while in nonaqueous solutions the PMF is significantly affected by explicit polarization. For example, the free energy barrier for a phosphoryl dissociation reaction in acetone and cyclohexane is found to increase by more than 10 kcal/mol when switching the solvent model from an empirical to explicitly polarizable one. The reason for this is discussed based on the parametrization of empirical nonpolarizable models.

摘要

由于量子力学/分子力学(QM/MM)自由能计算需要进行大量的量子力学计算,因此这是一个重大的挑战。一种有用的降低计算成本的方法是基于对 QM 子系统的平均场近似。在这里,我们通过从总系统的哈特里乘积假设出发,并调用自由能变分原理,为电子极化系统描述了这样一种平均场 QM/MM 理论。然后,通过引入电荷响应核,将 MM 部分重新表述为经典极化模型。数值测试表明,由此获得的平均力势(PMF)与直接 QM/MM 计算获得的 PMF 定量一致,表明自洽平均场近似的有效性。接下来,我们将获得的方法应用于几个定性不同溶剂中的典型反应,并对极化效应进行了系统比较。结果表明,在水溶液中,PMF 不太依赖于所采用的水模型,而在非水溶剂中,PMF 会受到明确极化的显著影响。例如,当将溶剂模型从经验性非极化模型切换为明确的极化模型时,在丙酮和环己烷中进行磷酸酯解反应的自由能势垒增加了 10 kcal/mol 以上。根据经验性非极化模型的参数化,讨论了产生这种情况的原因。

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