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Ab initio study of hydrogen migration across n-alkyl radicals

机译:从头开始研究氢跨正烷基的迁移

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摘要

A thorough ab initio investigation is conducted on all possible hydrogen migration pathways for the 1-ethyl, 1-propyl, 1-butyl, 1-pentyl, 1-hexyl, 1-heptyl, and 1-octyl radicals in order to determine underlying trends in reaction enthalpies, activation energies, Arrhenius A-factors, tunneling, and rate coefficients. The G4, G2, and CBS-Q composite methods are used to determine the enthalpy of reaction and activation energy barrier for each reaction. Each method shows excellent agreement with eight experimental enthalpy of reaction values, with root mean squared values of 0.8, 0.9, and 0.6 kcal mol~(-1) for CBS-Q, G2, and G4, respectively. Differences in barrier heights, A-factors, tunneling, and rate coefficients are observed for axial and equatorial arrangements as well as between secondary hydrogen migration sites, depending on the location of the secondary site relative to the terminal carbon. The validity of using cycloalkane model systems to estimate rate parameters is also assessed. The failure of two key assumptions inherent to the cycloalkane models, resulting in a breakdown in the accuracy of these methods for larger transition states, is discussed. This study has significant ramifications for future theoretical, experimental, and modeling studies involving the decomposition of n-alkanes.
机译:为了确定潜在趋势,对1-乙基,1-丙基,1-丁基,1-戊基,1-己基,1-庚基和1-辛基的所有可能的氢迁移途径进行了彻底的从头开始研究。反应焓,活化能,Arrhenius A因子,隧穿和速率系数。 G4,G2和CBS-Q复合方法用于确定反应的焓和每个反应的活化能垒。每种方法均显示出与八个实验焓值的极佳一致性,CBS-Q,G2和G4的均方根值分别为0.8、0.9和0.6 kcal mol〜(-1)。对于轴向和赤道布置以及在次要氢迁移位点之间,观察到势垒高度,A因子,隧穿和速率系数的差异,这取决于次要位点相对于末端碳的位置。还评估了使用环烷烃模型系统估算速率参数的有效性。讨论了环烷烃模型固有的两个关键假设的失败,从而导致这些方法在较大过渡态下的准确性下降。这项研究对涉及正构烷烃分解的未来理论,实验和模型研究有重大影响。

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