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首页> 外文期刊>The Journal of Chemical Physics >Geometry-dependent atomic multipole models for the water molecule
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Geometry-dependent atomic multipole models for the water molecule

机译:水分子的几何依赖性原子多极模型

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Models of atomic electric multipoles for the water molecule have been optimized in order to reproduce the electric potential around the molecule computed by ab initio calculations at the coupled cluster level of theory with up to noniterative triple excitations in an augmented triple-zeta quality basis set. Different models of increasing complexity, from atomic charges up to models containing atomic charges, dipoles, and quadrupoles, have been obtained. The geometry dependence of these atomic multipole models has been investigated by changing bond lengths and HOH angle to generate 125 molecular structures (reduced to 75 symmetry-unique ones). For several models, the atomic multipole components have been fitted as a function of the geometry by a Taylor series of fourth order in monomer coordinate displacements. Published by AIP Publishing.
机译:已经优化了水分子的原子电气多元oles模型,以便在耦合的聚类级理论上以AB初始计算计算的分子周围的电势再现在增强的三季质量基础集中的非特性三重激发。 已经获得了不同模型的模型,从原子收费到含有原子电荷,偶极子和四弦的模型。 通过改变粘合长度和HOH角度来研究这些原子多极模型的几何依赖性,以产生125个分子结构(减少到75个对称 - 独特的)。 对于多种型号,原子部多极组件已作为几何形状的函数通过单体坐标位移中的第四顺序的几何。 通过AIP发布发布。

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