Université de Bordeaux, ISM, CNRS UMR 5255, 33405 Talence Cedex, France.
LOMC - UMR 6294, CNRS-Université du Havre, 25 rue Philippe Lebon, BP 540, 76058, Le Havre, France.
J Chem Phys. 2013 Dec 14;139(22):224301. doi: 10.1063/1.4833676.
We present a new four-dimensional potential energy surface for the collisional excitation of HCN by H2. Ab initio calculations of the HCN-H2 van der Waals complex, considering both molecules as rigid rotors, were carried out at the explicitly correlated coupled cluster with single, double, and perturbative triple excitations [CCSD(T)-F12a] level of theory using an augmented correlation-consistent triple zeta (aVTZ) basis set. The equilibrium structure is linear HCN-H2 with the nitrogen pointing towards H2 at an intermolecular separation of 7.20 a0. The corresponding well depth is -195.20 cm(-1). A secondary minimum of -183.59 cm(-1) was found for a T-shape configuration with the H of HCN pointing to the center of mass of H2. We also determine the rovibrational energy levels of the HCN-para-H2 and HCN-ortho-H2 complexes. The calculated dissociation energies for the para and ortho complexes are 37.79 cm(-1) and 60.26 cm(-1), respectively. The calculated ro-vibrational transitions in the HCN-H2 complex are found to agree by more than 0.5% with the available experimental data, confirming the accuracy of the potential energy surface.
我们提出了一个新的 HCN 与 H2 碰撞激发的四维势能面。通过使用增强型相关一致三zeta(aVTZ)基组,在明确相关耦合簇单、双和微扰三激发[CCSD(T)-F12a]理论水平上,对 HCN-H2 范德华复合物进行了从头算计算,同时将两个分子视为刚性转子。平衡结构是线性的 HCN-H2,氮指向 H2,分子间距离为 7.20 a0。相应的阱深为-195.20 cm(-1)。对于 HCN 的 H 指向 H2 质心的 T 形构型,发现了一个-183.59 cm(-1)的次极小值。我们还确定了 HCN-para-H2 和 HCN-ortho-H2 复合物的振转动能级。para 和 ortho 复合物的计算解离能分别为 37.79 cm(-1)和 60.26 cm(-1)。在 HCN-H2 复合物中计算的转动跃迁与可用的实验数据吻合超过 0.5%,证实了势能面的准确性。