首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Potential energy surfaces, product distributions and thermal rate coefficients of the reaction of O(P-3) with C2H4(X(1)A(g)): A comprehensive theoretical study
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Potential energy surfaces, product distributions and thermal rate coefficients of the reaction of O(P-3) with C2H4(X(1)A(g)): A comprehensive theoretical study

机译:O(P-3)与C2H4(X(1)A(g))反应的势能面,产物分布和热速率系数:全面的理论研究

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The potential energy surface for the O(P-3) + C2H4 reaction, which plays an important role in C2H4/O-2 flames and in hydrocarbon combustion in general, was theoretically reinvestigated using various quantum chemical methods, including G3, CBS-QB3, G2M(CC,MP2), and MRCI. The energy surfaces of both the lowest-lying triplet and singlet electronic states were constructed. The primary product distribution for the multiwell multichannel reaction was then determined by RRKM statistical rate theory and weak-collision master equation analysis using the exact stochastic simulation method. Intersystem crossing of the "hot" CH2CH2O triplet adduct to the singlet surface, shown to account for about half of the products, was estimated to proceed at a rate of approximate to 1.5 x 10(11) s(-1). In addition, the thermal rate coefficients k(O + C2H4) in the T = 200-2000 K range were computed using multistate transition state theory and fitted by a modified Arrhenius expression as k(T) = 1.69 x 10(-16) x T-1.66 x exp(-331 K/T). Our computed rates and product distributions agree well with the available experimental results. Product yields are found to show a monotonic dependence on temperature. The major products (with predicted yields at T = 300 K/2000 K) are: CH3 + CHO (48/37%), H + CH2CHO (40/19%), and CH2((XBj)-B-3) + H2CO (5/29%), whereas H + CH3CO, H-2 + H2CCO, and CH4 + CO are all minor (<= 5%).
机译:O(P-3)+ C2H4反应的势能面在C2H4 / O-2火焰和一般的烃类燃烧中起着重要的作用,在理论上已使用包括G3,CBS-QB3在内的各种量子化学方法进行了重新研究。 ,G2M(CC,MP2)和MRCI。构造了最低三重态和单重态电子态的能量面。然后,采用精确随机模拟方法,通过RRKM统计速率理论和弱碰撞主方程分析,确定了多井多通道反应的主要产物分布。据估计,“热” CH2CH2O三重态加合物向单峰表面的系统间交叉(占大约一半产物)以大约1.5 x 10(11)s(-1)的速率进行。此外,使用多态过渡态理论计算了T = 200-2000 K范围内的热速率系数k(O + C2H4),并通过修正的Arrhenius表达式拟合为k(T)= 1.69 x 10(-16)x T-1.66 x exp(-331 K / T)。我们计算出的费率和产品分布与可用的实验结果非常吻合。发现产物产率显示出对温度的单调依赖性。主要产物(在T = 300 K / 2000 K时的预测产率)是:CH3 + CHO(48/37%),H + CH2CHO(40/19%)和CH2((XBj)-B-3)+ H2CO(5/29%),而H + CH3CO,H-2 + H2CCO和CH4 + CO均较小(<= 5%)。

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