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Building better water models using the shape of the charge distribution of a water molecule

机译:使用水分子的电荷分布的形状构建更好的水模型

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The unique properties of liquid water apparently arise from more than just the tetrahedral bond angle between the nuclei of a water molecule since simple three-site models of water are poor at mimicking these properties in computer simulations. Four- and five-site models add partial charges on dummy sites and are better at modeling these properties, which suggests that the shape of charge distribution is important. Since a multipole expansion of the electrostatic potential describes a charge distribution in an orthogonal basis set that is exact in the limit of infinite order, multipoles may be an even better way to model the charge distribution. In particular, molecular multipoles up to the octupole centered on the oxygen appear to describe the electrostatic potential from electronic structure calculations better than four- and five-site models, and molecular multipole models give better agreement with the temperature and pressure dependence of many liquid state properties of water while retaining the computational efficiency of three-site models. Here, the influence of the shape of the molecular charge distribution on liquid state properties is examined by correlating multipoles of non-polarizable water models with their liquid state properties in computer simulations. This will aid in the development of accurate water models for classical simulations as well as in determining the accuracy needed in quantum mechanical/molecular mechanical studies and ab initio molecular dynamics simulations of water. More fundamentally, this will lead to a greater understanding of how the charge distribution of a water molecule leads to the unique properties of liquid water. In particular, these studies indicate that p-orbital charge out of the molecular plane is important.
机译:液态水的独特性质从水分子的细胞核之间的核心之间的独特性能显然出现,因为自动的三场水模型在计算机模拟中模拟这些性质差。四个和五个网站模型在虚拟网站上添加部分费用,更好地建模这些属性,这表明电荷分布的形状很重要。由于静电势的多极扩展描述了在无限顺序限制的正交基集中的电荷分布,因此多极可能是模拟电荷分布的更好方法。特别地,含有在氧气上以氧气为中心的octupole的分子多孔似乎描述了来自电子结构计算的静电电位优于四个和五个网站模型,并且分子多极模型与许多液态的温度和压力依赖性提供更好的一致性水的性质,同时保留三个网站模型的计算效率。这里,通过在计算机模拟中与液态特性相关的不可极化水模型的多元化物,检查分子电荷分布的形状对液态性质的影响。这将有助于开发用于古典模拟的准确水模型,以及确定量子机械/分子机械研究和 AB初始的精度分子动力学模拟水。更基本上,这将导致对水分子的电荷分布如何导致液态水的独特性能的了解。特别地,这些研究表明, P - 分子平面中的电荷是重要的。

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