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Towards quantitative diatomics-in-molecules model for the water molecule

机译:建立水分子的定量双分子模型

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摘要

The diatomics-in-molecules (DIM) model is developed for the water molecule which allows us to extend the set of molecular parameters quantitatively predicted with th help of this theory. It is shown that not only mixing of the neutral and ionic states when constructing the polyatomic basis functions as prescribed by the previous works is necessary for an accurate description of the ground state potential energy surface,but certain corrections due to a multicenter charge distribution in the polyatomic molecule are required. The results of new ab inition calculations for the potential curves of the ion-pair states of OH are employed. Finally, the energies of H_2O are obtained from the 9 * 9 DIM Hamiltonian matrix what makes feasible further applications of this surface in molecular dynamics simulations of water containing intermolecular complexes. The molecular constants predicted by DIM including harmonic frequencies are perfectly consistent with the reference data. The H_2O potential energy surface of spectroscopic accuracy created by Partridge and Schwenke have been used for the point-by-point comparison of DIM and ab initio results showing the efficiency of the present model.
机译:针对水分子开发了分子双原子模型(DIM),这使我们能够扩展借助该理论定量预测的分子参数集。结果表明,不仅要准确地描述基态势能面,还需要构造先前工作中规定的多原子基函数时混合中性态和离子态,而且由于原子中的多中心电荷分布而需要进行某些校正。需要多原子分子。采用了新的原子计算OH离子对态势能曲线的结果。最后,从9 * 9 DIM哈密顿矩阵获得H_2O的能量,这使该表面在含分子间复合物的分子动力学模拟中的进一步应用成为可能。 DIM预测的包括谐波频率的分子常数与参考数据完全一致。由Partridge和Schwenke创建的光谱精度的H_2O势能面已用于DIM的逐点比较,并且从头算结果表明了本模型的有效性。

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