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首页> 外文期刊>Theoretical chemistry accounts >A computational study of the radical-radical reaction of O(~3P) + C2H5 with comparisons to gas-phase kinetics and crossed-beam experiments
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A computational study of the radical-radical reaction of O(~3P) + C2H5 with comparisons to gas-phase kinetics and crossed-beam experiments

机译:O(〜3P)+ C2H5自由基反应的计算研究,以及与气相动力学和交叉束实验的比较

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摘要

We present density functional theory (DFT) and complete basis set (CBS) calculations of the prototypical radical-radical reaction of ground-state atomic oxygen [O(~3P)] with ethyl (C2H5) radicals. The respective reaction mechanisms and dynamics were investigated on the doublet potential energy surfaces using the DFT method and CBS model. In the title reaction, the barrierless addition of O(~3P) to C2H5 led to the formation of energy-rich intermediates that underwent subsequent isomerization and decomposition to yield various products. The products predicted to be found were: H2CO + CH3, CH3CHO + H, c-CH2OCH2 + H, ~(1,3)CH3COH + H, ~(1,3)HCOH + CH3, CH2CHOH + H, C2H3 + H2O, and CH2CH2 + OH. In particular, unlike previous kinetic results, proposed to proceed only through the direct H-atom abstraction process, two distinctive pathways to the formation of CH2CH2 + OH were predicted to be in competition: direct, barrierless H-atom abstraction mechanism versus addition process. The competition was consistent with the recent crossed-beam investigations, and their microscopic dynamic characteristics are discussed at the molecular level.
机译:我们提出了基态原子氧[O(〜3P)]与乙基(C2H5)自由基的原型自由基-自由基反应的密度泛函理论(DFT)和完整基集(CBS)计算。使用DFT方法和CBS模型研究了双峰势能面上的相应反应机理和动力学。在标题反应中,将O(〜3P)无障碍地添加到C2H5中导致形成了富含能量的中间体,该中间体经过随后的异构化和分解以生成各种产物。预计会发现以下产物:H2CO + CH3,CH3CHO + H,c-CH2OCH2 + H,〜(1,3)CH3COH + H,〜(1,3)HCOH + CH3,CH2CHOH + H,C2H3 + H2O,和CH2CH2 + OH。特别是,不同于先前的动力学结果(仅建议通过直接H原子抽象过程进行),预计CH2CH2 + OH形成的两个独特途径竞争激烈:直接,无障碍H原子抽象机制与加成过程。竞争与最近的横梁研究一致,并且在分子水平上讨论了它们的微观动力学特性。

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