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关于将托勒的诱导点偶极子模型与分子力学力场中的固定电荷分布相结合。

On combining Thole's induced point dipole model with fixed charge distributions in molecular mechanics force fields.

作者信息

Antila Hanne S, Salonen Emppu

出版信息

J Comput Chem. 2015 Apr 15;36(10):739-50. doi: 10.1002/jcc.23850.

DOI:10.1002/jcc.23850
PMID:25753482
Abstract

The Thole induced point dipole model is combined with three different point charge fitting methods, Merz-Kollman (MK), charges from electrostatic potentials using a grid (CHELPG), and restrained electrostatic potential (RESP), and two multipole algorithms, distributed multipole analysis (DMA) and Gaussian multipole model (GMM), which can be used to describe the electrostatic potential (ESP) around molecules in molecular mechanics force fields. This is done to study how the different methods perform when intramolecular polarizability contributions are self-consistently removed from the fitting done in the force field parametrization. It is demonstrated that the polarizable versions of the partial charge models provide a good compromise between accuracy and computational efficiency in describing the ESP of small organic molecules undergoing conformational changes. For the point charge models, the inclusion of polarizability reduced the the average root mean square error of ESP over the test set by 4-10%.

摘要

托勒诱导点偶极子模型与三种不同的点电荷拟合方法(默茨 - 科尔曼(MK)、使用网格从静电势获取电荷(CHELPG)和受限静电势(RESP))以及两种多极算法(分布式多极分析(DMA)和高斯多极模型(GMM))相结合,这些方法可用于描述分子力学力场中分子周围的静电势(ESP)。这样做是为了研究在力场参数化拟合中自洽地去除分子内极化率贡献时,不同方法的表现如何。结果表明,部分电荷模型的可极化版本在描述经历构象变化的小有机分子的ESP时,在准确性和计算效率之间提供了良好的折衷。对于点电荷模型,纳入极化率使测试集上ESP的平均均方根误差降低了4 - 10%。

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