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用于精确相互作用能评估的小而高效的基组:芳香分子 - 氩基态分子间势能和振转态

Small and efficient basis sets for the evaluation of accurate interaction energies: aromatic molecule-argon ground-state intermolecular potentials and rovibrational states.

作者信息

Cybulski Hubert, Baranowska-Łączkowska Angelika, Henriksen Christian, Fernández Berta

机构信息

Institute of Physics, Faculty of Physics, Astronomy and Informatics, Nicolaus Copernicus University , Grudziadzka 5, 87-100 Torun, Poland.

出版信息

J Phys Chem A. 2014 Nov 6;118(44):10288-97. doi: 10.1021/jp508317z. Epub 2014 Oct 27.

Abstract

By evaluating a representative set of CCSD(T) ground state interaction energies for van der Waals dimers formed by aromatic molecules and the argon atom, we test the performance of the polarized basis sets of Sadlej et al. (J. Comput. Chem. 2005, 26, 145; Collect. Czech. Chem. Commun. 1988, 53, 1995) and the augmented polarization-consistent bases of Jensen (J. Chem. Phys. 2002, 117, 9234) in providing accurate intermolecular potentials for the benzene-, naphthalene-, and anthracene-argon complexes. The basis sets are extended by addition of midbond functions. As reference we consider CCSD(T) results obtained with Dunning's bases. For the benzene complex a systematic basis set study resulted in the selection of the (Z)Pol-33211 and the aug-pc-1-33321 bases to obtain the intermolecular potential energy surface. The interaction energy values and the shape of the CCSD(T)/(Z)Pol-33211 calculated potential are very close to the best available CCSD(T)/aug-cc-pVTZ-33211 potential with the former basis set being considerably smaller. The corresponding differences for the CCSD(T)/aug-pc-1-33321 potential are larger. In the case of the naphthalene-argon complex, following a similar study, we selected the (Z)Pol-3322 and aug-pc-1-333221 bases. The potentials show four symmetric absolute minima with energies of -483.2 cm(-1) for the (Z)Pol-3322 and -486.7 cm(-1) for the aug-pc-1-333221 basis set. To further check the performance of the selected basis sets, we evaluate intermolecular bound states of the complexes. The differences between calculated vibrational levels using the CCSD(T)/(Z)Pol-33211 and CCSD(T)/aug-cc-pVTZ-33211 benzene-argon potentials are small and for the lowest energy levels do not exceed 0.70 cm(-1). Such differences are substantially larger for the CCSD(T)/aug-pc-1-33321 calculated potential. For naphthalene-argon, bound state calculations demonstrate that the (Z)Pol-3322 and aug-pc-1-333221 potentials are of similar quality. The results show that these surfaces differ substantially from the available MP2/aug-cc-pVDZ potential. For the anthracene-argon complex it proved advantageous to calculate interaction energies by using the (Z)Pol and the aug-pc-1 basis sets, and we expect it to be increasingly so for complexes containing larger aromatic molecules.

摘要

通过评估由芳香族分子和氩原子形成的范德华二聚体的一组具有代表性的CCSD(T)基态相互作用能,我们测试了Sadlej等人(《计算化学杂志》,2005年,26卷,145页;《捷克化学通讯集》,1988年,53卷,1995页)的极化基组以及Jensen的增强极化一致基组(《化学物理杂志》,2002年,117卷,9234页)在为苯 - 氩、萘 - 氩和蒽 - 氩配合物提供精确分子间势方面的性能。通过添加键中函数扩展了这些基组。作为参考,我们考虑用Dunning基组得到的CCSD(T)结果。对于苯配合物,系统的基组研究导致选择了(Z)Pol - 33211和aug - pc - 1 - 33321基组来获得分子间势能面。CCSD(T)/(Z)Pol - 33211计算的相互作用能值和势的形状与最佳可用的CCSD(T)/aug - cc - pVTZ - 33211势非常接近,而前一个基组要小得多。CCSD(T)/aug - pc - 1 - 33321势的相应差异更大。在萘 - 氩配合物的情况下,经过类似研究,我们选择了(Z)Pol - 3322和aug - pc - 1 - 333221基组。这些势显示出四个对称的绝对极小值,对于(Z)Pol - 3322基组能量为 - 483.2 cm⁻¹,对于aug - pc - 1 - 333221基组能量为 - 486.7 cm⁻¹。为了进一步检查所选基组的性能,我们评估了配合物的分子间束缚态。使用CCSD(T)/(Z)Pol - 33211和CCSD(T)/aug - cc - pVTZ - 33211苯 - 氩势计算的振动能级之间的差异很小,对于最低能级不超过0.70 cm⁻¹。对于CCSD(T)/aug - pc - 1 - 33321计算的势,这种差异要大得多。对于萘 - 氩,束缚态计算表明(Z)Pol - 3322和aug - pc - 1 - 333221势具有相似的质量。结果表明,这些势能面与可用的MP2/aug - cc - pVDZ势有很大不同。对于蒽 - 氩配合物,事实证明使用(Z)Pol和aug - pc - 1基组计算相互作用能是有利的,并且我们预计对于包含更大芳香族分子的配合物情况会越来越如此。

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