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Cl + CH4 → HCl + CH3反应的势能面、动力学及动力学研究

Potential energy surface, kinetics, and dynamics study of the Cl+CH4-->HCl+CH3 reaction.

作者信息

Rangel Cipriano, Navarrete Marta, Corchado Jose C, Espinosa-García Joaquín

机构信息

Departamento de Química Física, Universidad de Extremadura, 06071 Badajoz, Spain.

出版信息

J Chem Phys. 2006 Mar 28;124(12):124306. doi: 10.1063/1.2179067.

Abstract

A modified and recalibrated potential energy surface for the gas-phase Cl+CH4-->HCl+CH3 reaction is reported and tested. It is completely symmetric with respect to the permutation of the four methane hydrogen atoms and is calibrated with respect to updated experimental and theoretical stationary point properties and experimental forward thermal rate constants. From the kinetics point of view, the forward and reverse thermal rate constants and the activation energies were calculated using the variational transition-state theory with semiclassical transmission coefficients over a wide temperature range of 150-2500 K. The theoretical results reproduce the available experimental data, with a small curvature of the Arrhenius plot which indicates the role of tunneling in this hydrogen abstraction reaction. A dynamics study was also performed on this PES using quasiclassical trajectory (QCT) calculations, including corrections to avoid zero-point energy leakage along the trajectories. First, we found a noticeable internal energy in the coproduct methyl radical, both in the ground-state [CH4 (v=0)] and vibrationally excited [CH4 (v=1)] reactions. This CH3 internal energy was directly precluded in some experiments or oversimplified in previous theoretical studies using pseudotriatomic models. Second, our QCT calculations give HCl rotational distributions slightly hotter than those in experiment, but correctly describing the experimental trend of decreasing the HCl product rotation excitation in going from HCl (v'=0) to HCl (v'=1) for the CH4 (v=1) reaction. Third, the state specific scattering distributions present a reasonable agreement with experiment, although they tend to make the reaction more forward and backward scattered than found experimentally probably because of the hotter rotational distribution and the deficiencies of the QCT methods.

摘要

报道并测试了用于气相Cl + CH₄→HCl + CH₃反应的修正和重新校准的势能面。它对于四个甲烷氢原子的排列是完全对称的,并且根据更新的实验和理论驻点性质以及实验正向热速率常数进行了校准。从动力学角度来看,在150 - 2500 K的宽温度范围内,使用具有半经典传输系数的变分过渡态理论计算了正向和反向热速率常数以及活化能。理论结果再现了现有的实验数据,阿仑尼乌斯图的曲率较小,这表明了隧道效应在该氢提取反应中的作用。还使用准经典轨迹(QCT)计算对该势能面进行了动力学研究,包括为避免沿轨迹的零点能量泄漏而进行的修正。首先,我们发现在基态[CH₄ (v = 0)]和振动激发态[CH₄ (v = 1)]反应的副产物甲基自由基中都有明显的内能。这种CH₃内能在一些实验中被直接排除,或者在先前使用伪三原子模型的理论研究中被过度简化。其次,我们的QCT计算给出的HCl转动分布比实验中的略热,但正确地描述了在CH₄ (v = 1)反应中从HCl (v' = 0)到HCl (v' = 1)时HCl产物转动激发降低的实验趋势。第三,态特定散射分布与实验有合理的一致性,尽管它们倾向于使反应比实验中更向前和向后散射,这可能是由于转动分布更热以及QCT方法的缺陷。

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