Czakó Gábor, Bowman Joel M
Laboratory of Molecular Structure and Dynamics, Institute of Chemistry, Eötvös University , H-1518 Budapest 112, P.O. Box 32, Hungary.
J Phys Chem A. 2014 Apr 24;118(16):2839-64. doi: 10.1021/jp500085h. Epub 2014 Mar 19.
The bimolecular hydrogen abstraction reactions of methane with atoms have become benchmark systems to test and extend our knowledge of polyatomic chemical reactivity. We review the state-of-the-art methodologies for reaction dynamics computations of X + methane [X = F, O((3)P), Cl, Br] reactions, which consist of two key steps: (1) potential energy surface (PES) developments and (2) reaction dynamics computations on the PES using either classical or quantum methods. We briefly describe the permutationally invariant polynomial approach for step 1 and the quasiclassical trajectory method, focusing on the mode-specific polyatomic product analysis and the Gaussian binning (1GB) techniques, and reduced-dimensional quantum models for step 2. High-quality full-dimensional ab initio PESs and dynamical studies of the X + CH4 and CHD3 reactions are reviewed. The computed integral cross-sections, angular, vibrational, and rotational product distributions are compared with available experiments. Both experimental and theoretical findings shed light on the rules of mode-selective polyatomic reactivity.
甲烷与原子的双分子氢提取反应已成为测试和拓展我们对多原子化学反应性认识的基准体系。我们综述了用于X + 甲烷[X = F、O((3)P)、Cl、Br]反应动力学计算的最新方法,这些方法包括两个关键步骤:(1) 势能面(PES)的构建,以及(2) 使用经典或量子方法在PES上进行反应动力学计算。我们简要描述步骤1的置换不变多项式方法和准经典轨迹方法,重点关注特定模式的多原子产物分析和高斯分箱(1GB)技术,以及步骤2的降维量子模型。综述了X + CH4和CHD3反应的高质量全维从头算PES和动力学研究。将计算得到的积分截面、角分布、振动和转动产物分布与现有实验进行了比较。实验和理论研究结果都揭示了模式选择性多原子反应性的规律。