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首页> 外文期刊>The Journal of Chemical Physics >Polarization energy gradients in combined quantum mechanics,effective fragment potential,and polarizable continuum model calculations
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Polarization energy gradients in combined quantum mechanics,effective fragment potential,and polarizable continuum model calculations

机译:组合量子力学中的极化能梯度,有效碎片势和极化连续体模型计算

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摘要

A method that combines (quantum mechanics (QM),typically a solute,the effective fragment potential (EFP) discrete solvent model,and the polarizable continuum model is described.The EFP induced dipoles and polarizable continuum model (PCM) induced surface charges are determined in a self-consistent fashion.The gradients of these two energies with respect to molecular coordinate changes are derived and implemented.In general,the gradients can be formulated as simple electrostatic forces and torques among the QM nuclei,electrons,EFP static multipoles,induced dipoles,and PCM induced charges.Molecular geometry optimizations can be performed efficiently with these gradients.The formulas derived for EFP/PCM can be generally applied to other combined molecular mechanics and continuum methods that employ induced dipoles and charges.
机译:描述了一种结合(量子力学(QM),通常是溶质,有效碎片电位(EFP)离散溶剂模型和可极化连续体模型)的方法。确定了EFP诱导的偶极子和极化可连续体模型(PCM)诱导的表面电荷推导并实现了这两种能量相对于分子坐标变化的梯度。通常,可以将梯度表示为QM原子核,电子,EFP静态多极之间的简单静电力和转矩。利用这些梯度可以有效地执行分子几何优化。EFP / PCM的推导公式通常可应用于其他组合的分子力学和采用感应偶极和电荷的连续体方法。

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