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首页> 外文期刊>The Journal of Chemical Physics >A new variational coupled-electron pair approach to the intermolecular interaction calculation in the framework of the valence bond theory: The case of the water dimer system
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A new variational coupled-electron pair approach to the intermolecular interaction calculation in the framework of the valence bond theory: The case of the water dimer system

机译:在价键理论框架内计算分子间相互作用的新的变分耦合电子对方法:水二聚体系统的情况

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摘要

A general nonorthogonal coupled-electron pair approach based on the intermediate optimization of virtual orbitals is presented. The resulting procedure, similar to the independent electron pair approximation scheme, is developed in the framework of the valence bond (VB) theory, where the effect of the overlap is directly taken into account. Nonorthogonal virtual orbitals optimal for intermolecular correlation effects were determined starting from the self-consistent field for molecular interaction wave function. These were used in the context of a general ab initio variational multistructure VB wave function consisting of double excitations arising from simultaneous single excitations localized on each monomer. The basis set superposition error is excluded in an a priori fashion and geometry relaxation effects are naturally taken into account. As an application example, the equilibrium structure and binding energy of the water dimer system were determined. The equilibrium oxygen-oxygen distance results to be 2.954 A, in good agreement with the experimental values (2.946 or 2.952 A) corrected for anharmonicity of the dimer vibrations. The estimated equilibrium interaction energy is -5.02 kcal/mol, thus comparing favorably with the experimental value of -5.44 +- 0.7 kcal/mol. Taking zero-point vibrational effects into account, the calculated binding enthalpy is -3.22 kcal/mol, in accordance with the experimental estimate of -3.59 +- 0.5 kcal/mol, determined from measures of thermal conductivity of the vapor. The importance of employing basis sets that include diffuse polarization functions in correlated calculations on hydrogen-bonded systems is confirmed.
机译:提出了基于虚拟轨道中间优化的一般非正交耦合电子对方法。所得的过程类似于独立电子对近似方案,是在价键(VB)理论的框架内开发的,其中直接考虑了重叠的影响。从分子相互作用波函数的自洽场开始确定最适合分子间相关效应的非正交虚拟轨道。这些用于一般的从头算起的多结构VB波函数,该函数由双重激发组成,两次激发由定位在每个单体上的同时单个激发引起。以先验的方式排除了基组叠加误差,并且自然考虑了几何松弛效应。作为一个应用实例,确定了水二聚体系统的平衡结构和结合能。平衡的氧-氧距离为2.954 A,与针对二聚物振动的非谐性校正的实验值(2.946或2.952 A)非常吻合。估计的平衡相互作用能为-5.02 kcal / mol,因此与实验值-5.44 +-0.7 kcal / mol相比具有优势。考虑到零点振动效应,根据-3.59 +-0.5 kcal / mol的实验估算值,计算出的结合焓为-3.22 kcal / mol,该估算值是根据蒸汽的热导率测得的。证实了在氢键体系的相关计算中采用包括扩散极化函数的基集的重要性。

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