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哈特里-福克轨道和科恩-沈轨道在氢键连接体系基组叠加误差中的作用。

Role of Hartree-Fock and Kohn-Sham orbitals in the basis set superposition error for systems linked by hydrogen bonds.

作者信息

Garza Jorge, Ramírez José-Zeferino, Vargas Rubicelia

机构信息

Departamento de Química, División de Ciencias Basicas e Ingeniería, Universidad Autónoma Metropolitana-Iztapalapa, San Rafael Atlixco 186, Col. Vicentina, Iztapalapa, C. P. 09340. México D. F., México.

出版信息

J Phys Chem A. 2005 Feb 3;109(4):643-51. doi: 10.1021/jp046492+.

Abstract

In this work the effect of the basis set superposition error (BSSE) is explored with the counterpoise method on the occupied and unoccupied Hartree-Fock (HF) and Kohn-Sham (KS) orbitals. Three different systems linked by hydrogen bonds, H(2)O...FH, H(2)O...H(2)O, and H(2)O...CFH(3), were studied by using the basis set families cc-pVXZ and aug-cc-pVXZ (X = D, T, Q). The basis sets were tested with the HF method and two approximations for the exchange-correlation functional of KS: a generalized gradient approximation and a hybrid approach. In addition to these methods, the second-order Møller-Plesset perturbation theory, MP2, was considered. It was found that the presence of the "ghost" basis set affects the orbitals in two ways: (1) The occupied KS orbitals are more sensitive to the presence of this "ghost" basis set than the occupied HF orbitals. For this reason the BSSE observed in HF is less than that obtained with KS. (2) The unoccupied HF orbitals are more sensitive to the presence of the "ghost" basis set than their corresponding occupied orbitals. Because the MP2 method uses both, occupied and unoccupied HF orbitals, to compute the total energy, the contribution of the BSSE is bigger than that obtained with HF or KS methodologies.

摘要

在本工作中,采用抵消法研究了基组重叠误差(BSSE)对已占据和未占据的哈特里 - 福克(HF)及科恩 - 沙姆(KS)轨道的影响。通过使用cc - pVXZ和aug - cc - pVXZ(X = D、T、Q)基组族,研究了由氢键相连的三种不同体系:H₂O...FH、H₂O...H₂O和H₂O...CFH₃。这些基组用HF方法以及KS交换相关泛函的两种近似方法进行了测试:广义梯度近似和混合方法。除了这些方法外,还考虑了二阶莫勒 - 普列斯特定理(MP2)。结果发现,“赝”基组的存在以两种方式影响轨道:(1)已占据的KS轨道比已占据的HF轨道对这种“赝”基组的存在更敏感。因此,HF中观察到的BSSE小于KS中得到的BSSE。(2)未占据的HF轨道比其相应的已占据轨道对“赝”基组的存在更敏感。由于MP2方法使用已占据和未占据的HF轨道来计算总能量,所以BSSE的贡献比用HF或KS方法得到的更大。

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