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Kinetics of hydrogen abstraction reactions of butene isomers by OH radical

机译:OH自由基引发丁烯异构体的氢提取反应动力学。

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The rate coefficients of H-abstraction reactions of butene isomers by the OH radical were determined by both canonical variational transition-state theory and transition-state theory, with potential energy surfaces calculated at the CCSD(T)/6-311++G(d,p)//BH&HLYP/6-311G(d,p) level and CCSD(T)/6-311++G(d,p)// BH&HLYP/cc-pVTZ level and quantum mechanical tunneling effect corrected by either the small-curvature tunneling method or the Eckart method. While 1-butene contains allylic, vinylic, and alkyl hydrogens that can be abstracted to form different butene radicals, results reveal that s-allylic H-abstraction channels have low and broad energy barriers, and they are the most dominant channels which can occur via direct and indirect H-abstraction channels. For the indirect H-abstraction s-allylic channel, the reaction can proceed via forming two van der Waals prereactive complexes with energies that are 2.7 - 2.8 kcal mol ~(- 1) lower than that of the entrance channel at 0 K. Assuming that neither mixing nor crossover occurs between different reaction pathways, the overall rate coefficient was calculated by summing the rate coefficients of the s-allyic, methyl, and vinyl H-abstraction paths and found to agree well with the experimentally measured OH disappearance rate. Furthermore, the rate coefficients of p-allylic H abstraction of cis-2-butene, trans-2-butene, and isobutene by the OH radical were also determined at 300 - 1500 K, with results analyzed and compared with available experimental data.
机译:通过典型的变分过渡态理论和过渡态理论确定了丁烯异构体通过OH自由基的H吸收反应的速率系数,并以CCSD(T)/ 6-311 ++ G( d,p)// BH&HLYP / 6-311G(d,p)能级和CCSD(T)/ 6-311 ++ G(d,p)// BH&HLYP / cc-pVTZ能级和量子力学隧穿效应可通过以下任一方法进行校正小曲率隧道方法或Eckart方法。 1-丁烯含有烯丙基,乙烯基和烷基氢,这些氢可被抽象化以形成不同的丁烯自由基,但结果表明,s-烯丙基H吸收通道具有较低和较宽的能垒,并且它们是通过直接和间接H提取通道。对于间接的H-抽象s-烯丙基通道,反应可以通过形成两个范德华预反应配合物进行,其能量比0 K下的进入通道的能量低2.7-2.8 kcal mol〜(-1)。在不同的反应路径之间既不会发生混合也不会发生交叉,通过将S-烯丙基,甲基和乙烯基H吸收路径的速率系数相加得出总速率系数,发现与实验测得的OH消失速率非常吻合。此外,还确定了在300-1500 K下通过OH自由基对顺-2-丁烯,反式-2-丁烯和异丁烯进行对位烯丙基H脱氢的速率系数,并将结果进行了分析并与可用的实验数据进行了比较。

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