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首页> 外文期刊>International Journal of Quantum Chemistry >Prelude to molecular dynamics: Topography-driven gaussian charge models
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Prelude to molecular dynamics: Topography-driven gaussian charge models

机译:分子动力学的前奏:地形驱动的高斯电荷模型

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摘要

A new strategy to develop Gaussian charge models (GCMs) for molecules like ammonia, water, ethene, hydrogen sulfide, formaldehyde and benzene is presented. These molecular models comprising of positive point charges and negative Gaussian charge distributions (GCDs), which represent nuclei and continuous electron charge distribution, are found to correctly represent the ab initio Molecular Electrostatic Potential (MESP) and reproduce its essential topographical features of corresponding molecules. The models use optimized parameters: positive charges at nuclei, negative charges on GCDs, Gaussian exponent and centers. The Potential Energy Surface (PES) of water dimer has been explored using water GCMs. A good agreement has been found between PES obtained using GCMs and wave function. The Gaussian models correctly predict structure of benzene-water complex. It is thus recommended to use GCMs for molecular dynamic simulations.
机译:提出了一种为氨,水,乙烯,硫化氢,甲醛和苯如氨,水,乙烯,硫化氢,甲醛和苯等分子开发高斯电荷模型(GCMS)的新策略。 这些分子模型包含呈核和负高斯电荷分布(GCD),其代表核和连续电子电荷分布,可以正确地代表AB初始分子静电电位(MES)并再现相应分子的必要地形特征。 模型使用优化参数:核心的正收费,GCDS的负责,高斯指数和中心。 使用水GCMS探讨了水二聚体的潜在能量表面(PE)。 使用GCM和Wave功能获得的PE之间发现了一个良好的一致。 高斯模型正确预测苯水综合体的结构。 因此建议使用GCM进行分子动态模拟。

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