Shi Weiliang, Wang Kun, Zhang Ping, Yu Le, Li Anyang
Key Laboratory of Synthetic and Natural Functional Molecule of the Ministry of Education, College of Chemistry and Materials Science, Northwest University, Xi'an, 710127, P. R. China.
Phys Chem Chem Phys. 2021 Sep 22;23(36):20352-20358. doi: 10.1039/d1cp02603h.
The vibrational- and rotational-mode specificity of the multichannel NH + H reaction is studied on a recently constructed -based global potential energy surface using an initial state selected quasi-classical trajectory method, and the trajectories are analyzed using an isometric feature mapping and -means approach. All excitation modes promote two reactions (R1: NH' + H → NH + HH' and R4: NH' + H → NH + H') where both NH and HH bonds are broken, but reduce the reactivity of the proton-transfer reaction R2 (NH' + H → N + H'H) at low collision energies. For the hydrogen-transfer reaction R3 (NH' + H → HNH' + H), the rotational excitation of NH enhances the reactivity remarkably, while its vibrational excitation has an inhibiting effect on the reaction. The trajectory analyses show that the vibrational and rotational excitations of NH make R3 tend to go over a submerged saddle point instead of extracting hydrogen atoms directly. On the other hand, the motions of the H reactant facilitate the enhancement of the reactivity but they do not affect the mechanism of R3. In addition, the results suggest that the coupling of the isometric feature mapping and the -means approach in the trajectory analysis is an appropriate tool for reaction-dynamics studies.
利用初始态选择的准经典轨迹方法,在最近构建的基于 的全局势能面上研究了多通道NH + H反应的振动和转动模式特异性,并使用等距特征映射和 -均值方法对轨迹进行了分析。所有激发模式都促进两个反应(R1:NH' + H → NH + HH'和R4:NH' + H → NH + H'),其中NH键和HH键均断裂,但在低碰撞能量下降低了质子转移反应R2(NH' + H → N + H'H)的反应活性。对于氢转移反应R3(NH' + H → HNH' + H),NH的转动激发显著增强了反应活性,而其振动激发对反应具有抑制作用。轨迹分析表明,NH的振动和转动激发使R3倾向于越过一个潜没鞍点,而不是直接提取氢原子。另一方面,H反应物的运动促进了反应活性的增强,但它们不影响R3的反应机理。此外,结果表明轨迹分析中等距特征映射和 -均值方法的耦合是反应动力学研究的合适工具。