Laboratory of Molecular Structure and Dynamics, Institute of Chemistry, Eötvös University, H-1518 Budapest 112, P.O. Box 32, Hungary.
J Phys Chem A. 2013 Aug 15;117(32):6975-83. doi: 10.1021/jp312160n. Epub 2013 Mar 5.
Variational rotational-vibrational quantum chemical computations are performed for the F(-)-CH4 and F(-)-CH2D2 anion complexes using several reduced-dimensional models in a curvilinear polyspherical coordinate system and utilizing an accurate ab initio potential energy surface (PES). The implementation of the models is made practical by using the general rovibrational code GENIUSH, which constructs the complicated form of the exact rovibrational kinetic energy operator in reduced and full dimensions in any user-specified coordinates and body-fixed frames. A one-dimensional CF stretch, 1D(RCF), a two-dimensional intermolecular bend, 2D(θ,φ), and a three-dimensional intermolecular, 3D(RCF,θ,φ), rigid methane model provide vibrational energies for the low-frequency, large-amplitude modes in good agreement with full-dimensional MCTDH results for F(-)-CH4. The 2D(θ,φ) and 3D(RCF,θ,φ) four-well computations, describing equally the four possible CH-F(-) bonds, show that the ground-state tunneling splitting is less than 0.01 cm(-1). For the hydrogen-bonded CH stretching fundamental a local-mode model is found to have almost spectroscopic accuracy, whereas a harmonic frequency analysis performs poorly. The 2D(θ,φ) and 3D(RCF,θ,φ) rotational-vibrational computations on the Td-symmetric four-well PES reveal that in most cases F(-)-CH4 behaves as a semirigid C3v symmetric top. For the degenerate intermolecular bending vibrational states substantial splittings of the rigid rotor levels are observed. For F(-)-CH2D2 the rotational levels guide the assignment of the vibrational states to either F(-)-H or F(-)-D connectivity.
采用几种曲线多极坐标体系下的降维模型,并利用精确的从头算势能面(PES),对 F(-)-CH4 和 F(-)-CH2D2 负离子复合物进行变分转动-振动量子化学计算。模型的实现得益于通用的 rovibrational 代码 GENIUSH,它可以在任何用户指定的坐标和体坐标系中构建精确 rovibrational 动能算子在降维和全维的复杂形式。一维 CF 伸缩,1D(RCF),二维分子间弯曲,2D(θ,φ),和三维分子间,3D(RCF,θ,φ),刚性甲烷模型为低频、大振幅模式提供振动能,与 F(-)-CH4 的全维 MCTDH 结果吻合良好。描述四个可能的 CH-F(-)键的二维(θ,φ)和三维(RCF,θ,φ)四阱计算表明,基态隧穿分裂小于 0.01 cm(-1)。对于氢键 CH 伸缩基频,局部模式模型具有几乎光谱精度,而谐波频率分析效果较差。Td 对称四阱 PES 的二维(θ,φ)和三维(RCF,θ,φ)转动-振动计算表明,在大多数情况下,F(-)-CH4 表现为半刚性 C3v 对称陀螺。对于简并的分子间弯曲振动态,刚性转子能级发生了很大的分裂。对于 F(-)-CH2D2,转动能级指导振动态分配给 F(-)-H 或 F(-)-D 连接。