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Effects of reagent vibrational excitation on the dynamics of the H + CHD3 → H2 + CD3 reaction: A seven-dimensional time-dependent wave packet study

机译:试剂振动激发对H + CHD3→H2 + CD3反应动力学的影响:七维时变波包研究

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摘要

Seven-dimensional time-dependent wave packet calculations were carried out to study the title reaction on the potential energy surface constructed recently by the group [Y. Zhou, B. Fu, C. Wang, M. A. Collins, and D. H. Zhang, J. Chem. Phys. 134, 064323 (2011)10.1063/1.3552088]. Total reaction probabilities and integral cross sections were calculated for a number of initial vibration states. It is found that the fundamental C-H stretching excitation can promote the reaction dramatically. At E = 1.53 eV, it enhances the integral cross section by a factor of 13.2, which is in good agreement with the quasiclassical trajectory result on the ZBB1 potential energy surface, but larger than that on the the EG-2002 potential energy surface. The thermal rate constants were obtained for the title reaction by taking into account the contributions from all relevant initial vibration states. It is found that the ground initial state has a dominant contribution to the thermal rate constant at low temperature region. As the temperature increases, the relative contribution to the thermal rate constant from the ground initial state decreases quickly, and those from the stretching and bending excited states increases substantially. It is estimated that the C-H stretching mode contributes about 40 of the thermal rate constant at T = 1000 K despite the fact that the overall population for stretching excited states is tiny.
机译:进行了七维时变波包计算,以研究该小组最近构造的势能面上的标题反应[Y. Zhou B. Fu,C. Wang,M.A.Collins,and D.H.Zhang,J.Chem。物理134,064323(2011)10.1063 / 1.3552088]。计算了许多初始振动状态的总反应概率和积分截面。发现基本的C-H拉伸激发可以显着促进反应。在E = 1.53 eV时,它会将积分横截面增大了13.2倍,这与ZBB1势能面上的准经典轨迹结果十分吻合,但大于EG-2002势能面上的准经典轨迹结果。通过考虑所有相关的初始振动状态的贡献,获得标题反应的热速率常数。发现基态初始状态对低温区域的热速率常数起主要作用。随着温度升高,来自初始初始状态对热速率常数的相对贡献迅速减小,而来自拉伸和弯曲激发态的热速率常数的相对贡献显着增加。据估计,C-H拉伸模式贡献了T = 1000 K时约40%的热速率常数,尽管事实上,用于拉伸激发态的总体很小。

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