Department of Physical Chemistry and Center for Research in Biological Chemistry and Molecular Materials, University of Santiago de Compostela, E-15782 Santiago de Compostela, Spain.
J Chem Phys. 2012 Aug 21;137(7):074305. doi: 10.1063/1.4742153.
We evaluate the phenylacetylene-argon intermolecular potential energy surface by fitting a representative number of ab initio interaction energies to an analytic function. These energies are calculated at a grid of intermolecular geometries, using the CCSD(T) method and the aug-cc-pVDZ basis set extended with a series of 3s3p2d1f1g midbond functions. The potential is characterized by two equivalent global minima where the Ar atom is located above and below the phenylacetylene plane at a distance of 3.5781 Å from the molecular center of mass and at an angle of 9.08° with respect to the axis perpendicular to the phenylacetylene plane and containing the center of mass. The calculated interaction energy is -418.9 cm(-1). To check further the potential, we obtain the rovibrational spectrum of the complex and the results are compared to the available experimental data.
我们通过拟合大量从头算相互作用能到解析函数来评估苯乙炔-氩分子间势能面。这些能量是在分子间几何形状的网格上计算的,使用 CCSD(T)方法和 aug-cc-pVDZ 基组,并扩展了一系列 3s3p2d1f1g 中键函数。该势能由两个等效的全局最小值来表征,其中 Ar 原子位于苯乙炔平面上方和下方,距离质心的距离为 3.5781 Å,与垂直于苯乙炔平面且包含质心的轴的夹角为 9.08°。计算得到的相互作用能为-418.9 cm(-1)。为了进一步检查该势能,我们获得了复合物的转动-振动光谱,并将结果与可用的实验数据进行了比较。