Fishchuk Anna V, Groenenboom Gerrit C, van der Avoird Ad
Institute of Theoretical Chemistry, IMM, Radboud University Nijmegen, Toernooiveld 1, 6525 ED Nijmegen, The Netherlands.
J Phys Chem A. 2006 Apr 27;110(16):5280-8. doi: 10.1021/jp0557621.
Bound energy levels and properties of the Cl(2P)-HF complex were obtained from full three-dimensional (3D) calculations, with the use of the ab initio computed diabatic potential surfaces from the preceding paper and the inclusion of spin-orbit coupling. For a better understanding of the dynamics of this complex we also computed a 2D model in which the HF bond length r was frozen at the vibrationally averaged values r0 and r1 and a 2 + 1D model in which the 3D potentials were averaged over the v(HF) = 0 and v(HF) = 1 vibrational wave functions of free HF. Also 1D calculations were made in which both r and the Cl-HF distance R were frozen. The complex is found to have the linear hydrogen bonded Cl-HF structure, with ground-state quantum numbers J = 3/2 for the overall angular momentum and /omega/ = 3/2 for its projection on the intermolecular axis R. The binding energy is D0 = 432.25 cm(-1) for v(HF) = 0 and D0 = 497.21 cm(-1) for v(HF) = 1. Bending modes with /omega/ = 1/2 and /omega/ = 5/2 are split by the Renner-Teller effect, since the electronic ground state is a degenerate 2pi state. A series of intermolecular (R) stretch modes was identified. Rotational constants and e-f parity splittings were extracted from the levels computed for J = 1/2 to 7/2. The computed red shift of the HF stretch frequency of 64.96 cm(-1) and the 35Cl-37Cl isotope shift of 0.033 cm(-1) are in good agreement with the values of 68.77 and 0.035 cm(-1) obtained from the recent experiment of Merritt et al. (Phys. Chem. Chem. Phys. 2005, 7, 67), after correction for the effect of the He nanodroplet matrix in which they were measured.
通过全三维(3D)计算,利用前文从头算得到的非绝热势能面并考虑自旋 - 轨道耦合,获得了Cl(2P)-HF复合物的束缚能级和性质。为了更好地理解该复合物的动力学,我们还计算了一个二维模型,其中HF键长r被冻结在振动平均 值r0和r1,以及一个2 + 1D模型,其中三维势在自由HF的v(HF) = 0和v(HF) = 1振动波函数上进行平均。还进行了一维计算,其中r和Cl - HF距离R都被冻结。发现该复合物具有线性氢键Cl - HF结构,其总角动量的基态量子数J = 3/2,其在分子间轴R上的投影/omega/ = 3/2。对于v(HF) = 0,结合能为D0 = 432.25 cm(-1),对于v(HF) = 1,结合能为D0 = 497.21 cm(-1)。由于电子基态是简并的2pi态,/omega/ = 1/2和/omega/ = 5/2的弯曲模式被伦纳 - 泰勒效应分裂。识别出了一系列分子间(R)伸缩模式。从J = 1/2到7/2计算的能级中提取了转动常数和e - f宇称分裂。计算得到的HF伸缩频率的红移为64.96 cm(-1),35Cl - 37Cl同位素位移为0.033 cm(-1),与Merritt等人最近的实验(《物理化学化学物理》2005年,7卷,67页)得到的值68.77和0.035 cm(-1) 吻合良好,这是在对测量它们时所用的氦纳米液滴基质的影响进行校正之后。