Fajín José Luis Cagide, Cacheiro Javier Lpez, Fernández Berta
Department of Physical Chemistry, Faculty of Chemistry, University of Santiago de Compostela, Santiago de Compostela E-15782, Spain.
J Chem Phys. 2004 Sep 8;121(10):4599-604. doi: 10.1063/1.1782492.
From an accurate ground state intermolecular potential energy surface we evaluate the rovibrational spectrum of the Ne-HCl van der Waals complex. The intermolecular potential is obtained by fitting a considerable number of interaction energies obtained at the coupled cluster singles and doubles including connected triple excitations level and with the augmented correlation consistent polarized valence quintuple zeta basis set extended with a set of 3s3p2d1f1g midbond functions. This basis set is selected after a systematic basis set study carried out at geometries close to those of the three main surface stationary points. The surface is characterized by two linear minima, i.e. Ne-ClH and Ne-HCl, with distances from the Ne atom to the HCl center of mass of 3.398 and 3.833 angstroms, respectively; and binding energies of -65.10 and -66.85 cm(-1), respectively. These results agree well with the experimental data available in contrast to previous theoretical results. The rovibrational spectra calculated for the different isotopic species are also compared to the experiments.
基于精确的基态分子间势能面,我们计算了Ne-HCl范德华复合物的振转光谱。分子间势能是通过拟合大量在耦合簇单双激发包括连接三重激发水平下获得的相互作用能得到的,使用的基组是在aug-cc-pVQZ基组基础上扩展了一组3s3p2d1f1g键中函数。这个基组是在对接近三个主要表面驻点几何结构的基组进行系统研究后选定的。该势能面的特征是有两个线性极小值,即Ne-ClH和Ne-HCl,Ne原子到HCl质心的距离分别为3.398和3.833埃;结合能分别为-65.10和-66.85 cm(-1)。与之前的理论结果相比,这些结果与现有实验数据吻合得很好。还将不同同位素物种的振转光谱计算结果与实验进行了比较。