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C-H伸缩振动模式激发在Cl + CHD3反应动力学中的作用:准经典轨迹计算

Role of the C-H stretch mode excitation in the dynamics of the Cl + CHD3 reaction: a quasi-classical trajectory calculation.

作者信息

Espinosa-García J

机构信息

Departamento de Química Física, Universidad de Extremadura, 06071 Badajoz, Spain. joaquin.unex.es

出版信息

J Phys Chem A. 2007 Oct 4;111(39):9654-61. doi: 10.1021/jp073549u. Epub 2007 Sep 8.

Abstract

To analyze the effect of the C-H stretch mode excitation on the dynamics of the Cl + CHD3 gas-phase abstraction reaction, an exhaustive state-to-state dynamics study was performed. This reaction can evolve along two channels: H-abstraction, CD3 + ClH, and D-abstraction, CHD2 + ClD. On an analytical potential energy surface constructed previously by our group, named PES-2005, quasi-classical trajectory calculations were performed at a collision energy of 0.18 eV, including corrections to avoid zero-point energy leakage along the trajectories. First, strong coupling between different vibrational modes in the entry valley was observed; i.e., the reaction is vibrationally nonadiabatic. Second, for the ground-state CHD3(nu=0) reaction, the diatomic fragments appeared in their ground states, and the H- and D-abstraction reactions showed similar reactivities. However, when the reactivity per atom is considered, the H is three times more reactive than the D atom. Third, when the C-H stretch mode is excited by one quantum, CHD3(nu1=1), the H-abstraction is strongly favored, and the C-H stretch excitation is maintained in the product CHD2(nu1=1) + ClD channel; i.e., the reaction shows mode selectivity, reproducing the experimental evidence, and also the reactivity of the vibrational ground state is increased, in agreement with experiment. Fourth, the state-to-state angular distributions of the CD3 and CHD2 products showed the products to be practically sideways for the reactant ground state, while the C-H excitation yielded a more forward scattering, reproducing the experimental data. The role of the zero-point energy correction was also analyzed, and we find that the dynamics results are very sensitive on how the ZPE issue is treated. Finally, a comparison is made with the similar H + CHD3(nu1=0,1) and Cl + CH4(nu1=0,1) reactions.

摘要

为了分析C-H伸缩模式激发对Cl + CHD3气相夺氢反应动力学的影响,进行了详尽的态-态动力学研究。该反应可沿两个通道进行:夺氢反应生成CD3 + ClH,以及夺氘反应生成CHD2 + ClD。在我们团队之前构建的名为PES - 2005的解析势能面上,于0.18 eV的碰撞能量下进行了准经典轨迹计算,计算中包含了修正以避免沿轨迹的零点能量泄漏。首先,观察到入口谷中不同振动模式之间存在强耦合;即该反应是振动非绝热的。其次,对于基态CHD3(ν = 0)反应,双原子碎片以基态出现,且夺氢和夺氘反应表现出相似的反应活性。然而,当考虑每个原子的反应活性时,氢原子的反应活性是氘原子的三倍。第三,当C-H伸缩模式被一个量子激发,即CHD3(ν1 = 1)时,夺氢反应受到强烈青睐,并且在产物CHD2(ν1 = 1)+ ClD通道中C-H伸缩激发得以保留;即该反应表现出模式选择性,这与实验证据相符,同时振动基态的反应活性也增加了,这与实验一致。第四,CD3和CHD2产物的态-态角分布表明,对于反应物基态,产物几乎是侧向散射的,而C-H激发则产生了更多的前向散射,这与实验数据相符。还分析了零点能量修正的作用,我们发现动力学结果对零点能量问题的处理方式非常敏感。最后,将其与类似的H + CHD3(ν1 = 0,1)和Cl + CH4(ν1 = 0,1)反应进行了比较。

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