LOMC-UMR 6294, CNRS-Université du Havre, 25 rue Philippe Lebon, BP 540, 76058, Le Havre, France.
Phys Chem Chem Phys. 2012 Dec 21;14(47):16458-66. doi: 10.1039/c2cp42212c. Epub 2012 Nov 7.
We present a new four dimensional (4D) potential energy surface for the O(2)-H(2) system. Both molecules were treated as rigid rotors. Potential was obtained from the electronic structure calculations using a partially spin-restricted coupled cluster with the single, double and perturbative triple excitations [RCCSD(T)] method. The four atoms were described using the augmented correlation-consistent quadruple zeta (aug-cc-pVQZ) basis sets. Bond functions were placed at mid-distance between the O(2) center of mass and the center of mass of H(2) for a better description of the van der Waals interaction. Additionally, at five characteristic geometries, we calculated perturbational components of the interaction energy using the Symmetry-Adapted Perturbation Theory [SAPT] approach to explain the anisotropy of the potential energy surface. Bound states of the O(2)-H(2) van der Waals complex are computed using this potential. Close coupling calculations of the inelastic integral cross sections of O(2) in collisions with para-H(2) and ortho-H(2) were also calculated at low energies. After Boltzmann thermal averaging, rate coefficients were obtained for temperatures ranging from 5 to 100 K. No significant differences exist between para- and ortho-H(2) results.
我们提出了一个新的 O(2)-H(2) 体系的四维(4D)势能面。两个分子都被视为刚性转子。势能是通过使用部分自旋限制的耦合簇方法与单、双和微扰三重激发 [RCCSD(T)] 方法从电子结构计算中获得的。四个原子使用扩充相关一致 quadruple zeta(aug-cc-pVQZ)基组进行描述。键函数放置在 O(2)质心和 H(2)质心之间的中间距离处,以更好地描述范德华相互作用。此外,在五个特征几何形状下,我们使用对称自适应微扰理论 [SAPT] 方法计算了相互作用能的微扰分量,以解释势能面的各向异性。使用该势能计算了 O(2)-H(2)范德华复合物的束缚态。还在低能下计算了 O(2)与 para-H(2)和 ortho-H(2)碰撞的非弹性整体截面的紧密耦合计算。经过玻尔兹曼热平均后,获得了温度范围为 5 至 100 K 的速率系数。para-H(2) 和 ortho-H(2) 的结果之间没有显著差异。