首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Thermal Rate Coefficients via Variational Transition State Theory for the Unimolecular Decomposition/Isomerization of 1-Pentyl Radical: Ab Initio and Direct Dynamics Calculations
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Thermal Rate Coefficients via Variational Transition State Theory for the Unimolecular Decomposition/Isomerization of 1-Pentyl Radical: Ab Initio and Direct Dynamics Calculations

机译:通过变分过渡态理论对1-戊基自由基进行单分子分解/异构化的热速率系数:从头算和直接动力学计算

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摘要

Calculations of thermal rates for the reactions of the isomeric pentyl radicals involving (1, 2), (1, 3), (1, 4), and (1, 5) intramolecular H-atom transfer, C-C bond scission, and H-atom elimination have been carried out. Potential energy surfaces and associated properties for these reactions have been used for direct dynamics studies within conventional and variational transition state theory formalism including nonclassical effects, using the dual-level technique (PUMP-SAC2/6-311G~(**)///AM1). We found that for C-C scission, the barrier is broad, and a significant tightening of the loose transition state reduces the rate coefficients across a wide temperature range. Converse behavior is predicted for the isomerization reactions where the optimal combination of a low effective mass with a narrow barrier opens the best tunneling paths. High-pressure limiting rate coefficients and kinetic parameters obtained in this study show good agreement with experimental measurements and previous theoretical work.
机译:计算涉及(1,2),(1,3),(1,4)和(1,5)分子内H原子转移,CC键断裂和H-的异构戊基反应的热速率已经进行了原子消除。这些反应的势能面和相关属性已通过双层技术(PUMP-SAC2 / 6-311G〜(**)///)用于常规动力学和变分过渡状态理论形式主义中的直接动力学研究,包括非经典效应。 AM1)。我们发现,对于C-C分裂,势垒很宽,而松散过渡态的明显收紧会降低宽温度范围内的速率系数。对于异构化反应,可以预测相反的行为,其中低有效质量与窄势垒的最佳组合打开了最佳隧穿路径。在这项研究中获得的高压极限率系数和动力学参数与实验测量和先前的理论工作显示出良好的一致性。

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