Johnson Erin R, Becke Axel D
Department of Chemistry, Queen's University Kingston, Ontario, Canada, K7L 3N6.
J Chem Phys. 2005 Jul 8;123(2):24101. doi: 10.1063/1.1949201.
Intermolecular interactions are of great importance in chemistry but are difficult to model accurately with computational methods. In particular, Hartree-Fock and standard density-functional approximations do not include the physics necessary to properly describe dispersion. These methods are sometimes corrected to account for dispersion by adding a pairwise C6R6 term, with C6 dispersion coefficients dependent on the atoms involved. We present a post-Hartree-Fock model in which C6 coefficients are generated by the instantaneous dipole moment of the exchange hole. This model relies on occupied orbitals only, and involves only one, universal, empirical parameter to limit the dispersion energy at small interatomic separations. The model is extensively tested on isotropic C6 coefficients of 178 intermolecular pairs. It is also applied to the calculation of the geometries and binding energies of 20 intermolecular complexes involving dispersion, dipole-induced dipole, dipole-dipole, and hydrogen-bonding interactions, with remarkably good results.
分子间相互作用在化学中非常重要,但用计算方法精确建模却很困难。特别是,哈特里 - 福克方法和标准密度泛函近似并不包含正确描述色散所需的物理过程。这些方法有时会通过添加一个成对的C6R6项来校正色散,其中C6色散系数取决于所涉及的原子。我们提出了一种后哈特里 - 福克模型,其中C6系数由交换空穴的瞬时偶极矩生成。该模型仅依赖于占据轨道,并且仅涉及一个通用的经验参数来限制小原子间距下的色散能。该模型在178个分子间对的各向同性C6系数上进行了广泛测试。它还被应用于计算20个涉及色散、偶极 - 诱导偶极、偶极 - 偶极和氢键相互作用的分子间复合物的几何结构和结合能,结果非常好。