Division of Chemistry and Biological Chemistry, School of Physical and Mathematical Sciences, Nanyang Technological University, Singapore 637371, Singapore.
J Chem Phys. 2013 Oct 21;139(15):154310. doi: 10.1063/1.4825100.
The reaction dynamics of hydroxyl radical with methane has been investigated using time-dependent wave packet approach within reduced six- and seven-dimensional models. Initial state-selected total reaction probabilities and integral cross sections for the hydrogen abstraction reaction have been computed on the empirical potential energy surface developed by Espinosa-García et al. [J. Chem. Phys. 112, 5731 (2000)]. Excitations of the CH stretching mode and/or the CH3 umbrella mode enhance the reaction. They are, however, both less efficient than translational energy in promoting the reaction, at least at low collision energies. Also, we studied the accuracy of two approximations: centrifugal sudden (CS) and J-shifting (JS), in the calculations of the integral cross sections by a comparison to coupled-channel (CC) calculations. The integral cross sections obtained indicated that the CS approximation works well over the whole energy range studied, and the JS approximation gives accurate cross sections at low collision energies, while noticeably overestimates them at relatively high collision energies. In addition, the OH radical acts as a good spectator as it has a negligible effect on the reaction.
使用时变波包方法,在简化的六维和七维模型中研究了羟基自由基与甲烷的反应动力学。基于 Espinosa-García 等人发展的经验势能面,计算了氢提取反应的初始态总反应概率和积分截面[J. Chem. Phys. 112, 5731 (2000)]。激发 CH 伸缩模式和/或 CH3 伞式模式会增强反应。然而,与平移能相比,它们在促进反应方面的效率都较低,至少在低碰撞能下是这样。此外,我们通过与耦合通道(CC)计算的比较,研究了两种近似方法:离心猝灭(CS)和 J 移位(JS)在积分截面计算中的准确性。所得积分截面表明,CS 近似在整个研究能量范围内表现良好,JS 近似在低碰撞能下给出准确的截面,而在相对高的碰撞能下则明显高估。此外,OH 自由基作为一个良好的旁观者,因为它对反应几乎没有影响。