Song Hongwei, Guo Hua
Department of Chemistry and Chemical Biology, University of New Mexico, Albuquerque, New Mexico 87131, USA.
J Chem Phys. 2014 Dec 28;141(24):244311. doi: 10.1063/1.4904483.
Rotational mode specificity of the title reaction is examined using an initial state selected time-dependent wave packet method on an accurate ab initio based global potential energy surface. This penta-atomic reaction presents an ideal system to test several dynamical approximations, which might be useful for future quantum dynamics studies of polyatomic reactions, particularly with rotationally excited reactants. The first approximation involves a seven-dimensional (7D) model in which the two non-reactive N-H bonds are fixed at their equilibrium geometry. The second is the centrifugal sudden (CS) approximation within the 7D model. Finally, the J-shifting (JS) model is tested, again with the fixed N-H bonds. The spectator-bond approximation works very well in the energy range studied, while the centrifugal sudden and J-shifting integral cross sections (ICSs) agree satisfactorily with the coupled-channel counterparts in the low collision energy range, but deviate at the high energies. The calculated integral cross sections indicate that the rotational excitation of H2 somewhat inhibits the reaction while the rotational excitations of NH2 have little effect. These findings are compared with the predictions of the sudden vector projection model. Finally, a simple model is proposed to predict rotational mode specificity using K-averaged reaction probabilities.
利用基于精确从头算的全局势能面上的初始态选择含时波包方法,研究了标题反应的转动模式特异性。这个五原子反应是测试几种动力学近似的理想体系,这些近似可能对未来多原子反应的量子动力学研究有用,特别是对于转动激发的反应物。第一种近似涉及一个七维(7D)模型,其中两个非反应性的N - H键固定在其平衡几何构型。第二种是7D模型中的离心猝发(CS)近似。最后,再次在固定N - H键的情况下测试了J - 位移(JS)模型。旁观者键近似在所研究的能量范围内效果很好,而离心猝发和J - 位移积分截面(ICSs)在低碰撞能量范围内与耦合通道对应截面令人满意地吻合,但在高能量时出现偏差。计算得到的积分截面表明,H₂的转动激发在一定程度上抑制了反应,而NH₂的转动激发影响很小。将这些结果与突然矢量投影模型的预测进行了比较。最后,提出了一个简单模型,使用K平均反应概率来预测转动模式特异性。