Stimac Philip J, Barker John R
Department of Atmospheric, Oceanic, and Space Sciences, University of Michigan, Ann Arbor, Michigan 48109-2143, USA.
J Phys Chem A. 2006 Jun 1;110(21):6851-9. doi: 10.1021/jp0568024.
Classical trajectory calculations on intramolecular vibrational energy redistribution (IVR) involving the torsion in 1,1,1-trifluoroethane (TFE) are reported. Two potential energy functions (PEFs) are used to describe the potential energy surface. The "full" PEF gives excellent agreement with the experimental vibrational frequencies. The "simple" PEF omits nondiagonal interaction terms, but still gives very good agreement with the experimental frequencies. The "simple" PEF is intended to minimize mode-mode coupling. Neither PEF includes the HF elimination reaction. Calculations are carried out both with nominal microcanonical selection of initial coordinates and momenta, and with a modified selection method that places controlled amounts of energy in the torsion. Total (classical) vibrational energies from 0.005 to 140 kcal mol(-1) are investigated. The calculated time constants describing energy flow out of the torsional mode are <10 ps for classical vibrational energies near the classical reaction threshold energy (approximately 75 kcal mol(-1)) and greater. It is found that the rate of decay from the torsion largely depends on the amount of energy in the other vibrational modes. Analysis using power spectra shows that the torsional mode in TFE is strongly coupled to the other vibrational modes. These results strongly suggest that vibrational energy in TFE will not be sequestered in the torsion for time periods greater than a few tens of picoseconds when the molecule has enough energy to react via HF elimination.
报道了关于1,1,1-三氟乙烷(TFE)分子内扭转振动能量重新分布(IVR)的经典轨迹计算。使用两个势能函数(PEF)来描述势能面。“完整”的PEF与实验振动频率吻合得非常好。“简单”的PEF省略了非对角相互作用项,但与实验频率仍吻合得很好。“简单”的PEF旨在最小化模式-模式耦合。两个PEF均未包含HF消除反应。计算分别采用初始坐标和动量的名义微正则选择,以及一种改进的选择方法,该方法在扭转中放置可控量的能量。研究了0.005至140 kcal mol⁻¹的总(经典)振动能量。对于接近经典反应阈值能量(约75 kcal mol⁻¹)及更高的经典振动能量,描述能量从扭转模式流出的计算时间常数小于10 ps。发现扭转模式的衰减速率在很大程度上取决于其他振动模式中的能量量。使用功率谱的分析表明,TFE中的扭转模式与其他振动模式强烈耦合。这些结果有力地表明,当分子具有足够的能量通过HF消除反应时,TFE中的振动能量在几十皮秒以上的时间段内不会被隔离在扭转中。