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首页> 外文期刊>Bulletin of the Korean Chemical Society >A Gas-Phase Investigation of Oxygen-Hydrogen Exchange Reaction of O(3P) + C2H5 → H(2S) + C2H4O
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A Gas-Phase Investigation of Oxygen-Hydrogen Exchange Reaction of O(3P) + C2H5 → H(2S) + C2H4O

机译:O( 3 P)+ C 2 H 5 →H( 2的氧氢交换反应的气相研究 S)+ C 2 H 4 O

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The gas-phase radical-radical reaction O(3P) + C2H5 (ethyl) → H(2S) + CH3CHO (acetaldehyde) was investigated by applying a combination of vacuum-ultraviolet laser-induced fluorescence spectroscopy in a crossed beam configuration and ab initio calculations. The two radical reactants O(3P) and C2H5 were respectively produced by photolysis of NO2 and supersonic flash pyrolysis of the synthesized precursor azoethane. Doppler profile analysis of the nascent H-atom products in the Lyman-α region revealed that the average translational energy of the products and the average fraction of the total available energy released as translational energy were 5.01 ± 0.72 kcal mol−1 and 6.1%, respectively. The empirical data combined with CBS-QB3 level ab initio theory and statistical calculations demonstrated that the title exchange reaction is a major channel and proceeds via an addition-elimination mechanism through the formation of a short-lived, dynamical addition complex on the doublet potential energy surface. On the basis of systematic comparison with several exchange reactions of hydrocarbon radicals, the observed small kinetic energy release can be explained in terms of the loose transition state with a product-like geometry and a small reverse activation barrier along the reaction coordinate.
机译:气相自由基自由基反应O(3P)+ C2H5(乙基)→H(2S)+ CH3CHO(乙醛)通过结合真空紫外激光诱导的荧光光谱以交叉光束构型和从头开始进行研究计算。两种自由基反应物O(3P)和C2H5分别是通过NO2的光解和合成的前体偶氮乙烷的超音速快速热解制备的。对Lyman-α区域新生H原子产物的多普勒谱分析表明,产物的平均平移能和作为平移能释放的总可用能的平均分数分别为5.01±0.72 kcal mol-1和6.1%,分别。经验数据与CBS-QB3能级从头算理论和统计计算相结合表明,标题交换反应是主要途径,并且通过加成消除机理通过在二重态势能上形成短暂的动态加成络合物而进行。表面。在与烃基的几种交换反应进行系统比较的基础上,观察到的小的动能释放可以用具有类似产物的几何形状和沿着反应坐标的小的反向活化势垒的松散过渡态来解释。

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