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Quantum Mechanics/Molecular Mechanics Electrostatic Embedding with Continuous and Discrete Functions

机译:具有连续和离散功能的量子力学/分子力学静电嵌入

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摘要

A quantum mechanics/molecular mechanics (QM/MM) implementation that uses the Gaussian electrostatic model (GEM) as the MM force field is presented. GEM relies on the reproduction of electronic density by using auxiliary basis sets to calculate each component of the intermolecular interaction. This hybrid method has been used, along with a conventional QM/MM (point charges) method, to determine the polarization on the QM subsystem by the MM environment in QM/MM calculations on 10 individual H2O dimers and a Mg2+-H2O dimer. We observe that GEM gives the correct polarization response in cases when the MM fragment has a small charge, while the point charges produce significant over-polarization of the QM subsystem and in several cases present an opposite sign for the polarization contribution. In the case when a large charge is located in the MM subsystem, for example, the Mg2+ ion, the opposite is observed at small distances. However, this is overcome by the use of a damped Hermite charge, which provides the correct polarization response.
机译:提出了使用高斯静电模型(GEM)作为MM力场的量子力学/分子力学(QM / MM)实现。 GEM通过使用辅助基础集来计算分子间相互作用的每个成分,依靠电子密度的再现。此混合方法已与常规QM / MM(点电荷)方法一起用于确定MM环境在10个单独的H2O二聚体和Mgs2 +的QM / MM计算中QM子系统上的极化。 -H2O二聚体。我们观察到,当MM片段的电荷较小时,GEM会给出正确的极化响应,而点电荷会导致QM子系统明显过极化,并且在某些情况下,极化贡献会出现相反的符号。在大的电荷位于MM子系统中的情况下,例如Mg 2 + 离子,在小距离处观察到相反的情况。但是,这可以通过使用阻尼的Hermite电荷来克服,该电荷提供正确的极化响应。

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