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一种新的分子电子结构的参数化模型。

A new parametrizable model of molecular electronic structure.

机构信息

Chemistry Department, Moscow State University, 119992 Moscow, Russia.

出版信息

J Chem Phys. 2011 Oct 7;135(13):134120. doi: 10.1063/1.3646498.

Abstract

A new electronic structure model is developed in which the ground state energy of a molecular system is given by a Hartree-Fock-like expression with parametrized one- and two-electron integrals over an extended (minimal + polarization) set of orthogonalized atom-centered basis functions, the variational equations being solved formally within the minimal basis but the effect of polarization functions being included in the spirit of second-order perturbation theory. It is designed to yield good dipole polarizabilities and improved intermolecular potentials with dispersion terms. The molecular integrals include up to three-center one-electron and two-center two-electron terms, all in simple analytical forms. A method to extract the effective one-electron Hamiltonian of nonlocal-exchange Kohn-Sham theory from the coupled-cluster one-electron density matrix is designed and used to get its matrix representation in a molecule-intrinsic minimal basis as an input to the parametrization procedure--making a direct link to the correlated wavefunction theory. The model has been trained for 15 elements (H, Li-F, Na-Cl, 720 parameters) on a set of 5581 molecules (including ions, transition states, and weakly bound complexes) whose first- and second-order properties were computed by the coupled-cluster theory as a reference, and a good agreement is seen. The model looks promising for the study of large molecular systems, it is believed to be an important step forward from the traditional semiempirical models towards higher accuracy at nearly as low a computational cost.

摘要

提出了一种新的电子结构模型,在该模型中,分子体系的基态能量由具有参数化的单电子和双电子积分的 Hartree-Fock 型表达式给出,这些积分是在扩展的(最小加极化)正交原子中心基函数集上进行的,变分方程在最小基中形式上求解,但极化函数的影响则按照二级微扰理论的精神包含在内。该模型旨在产生良好的偶极极化率和改进的具有色散项的分子间势。分子积分包括多达三个中心的单电子和两个中心的双电子项,均采用简单的解析形式。设计了一种从耦合簇单电子密度矩阵中提取非局部交换 Kohn-Sham 理论有效单电子哈密顿量的方法,并将其在分子固有最小基中表示为参数化过程的输入,从而与相关波函数理论建立了直接联系。该模型在一组包含 5581 个分子(包括离子、过渡态和弱束缚复合物)的数据集上针对 15 个元素(H、Li-F、Na-Cl)进行了训练,其一阶和二阶性质由耦合簇理论计算作为参考,结果吻合较好。该模型有望用于研究大型分子体系,它被认为是朝着更高精度迈进的重要一步,而计算成本几乎没有增加。

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