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首页> 外文期刊>Physical chemistry chemical physics: PCCP >A gas-phase crossed-beam study of OH produced in the radical-radical reaction of O(~3P) with iso-propyl radical (CH3)2CH
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A gas-phase crossed-beam study of OH produced in the radical-radical reaction of O(~3P) with iso-propyl radical (CH3)2CH

机译:O(〜3P)与异丙基(CH3)2CH自由基自由基反应中生成的OH的气相交叉束研究

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The gas-phase radical-radical reaction dynamics of ground-state atomic oxygen [O(~3P)] with iso-propyl radicals, (CH3)2CH, were investigated by applying a combination of high-resolution laser-induced fluorescence spectroscopy in a crossed-beam configuration and ab initio calculations. The nascent distributions of OH (X~2II: v" = 0) from the major reaction channel O(~3P) + (CH3)2CH -> C3H6 (propene) + OH showed substantial internal excitations with a bimodal feature of low- and high-N'' components with neither spin-orbit nor A-doublet propensities. Unlike previous kinetic results, proposed to proceed only through the direct H-atom abstraction process, on the basis of the population analysis and comparison with the statistical theory, the title reaction can be described in terms of two competing mechanisms at the molecular level: direct abstraction process and indirect short-lived addition-complex-forming process with a ratio of 1.25:1.
机译:通过结合高分辨率激光诱导荧光光谱法研究了基态原子氧[O(〜3P)]与异丙基(CH3)2CH的气相自由基反应动力学。交叉光束配置和从头算起。来自主要反应通道O(〜3P)+(CH3)2CH-> C3H6(丙烯)+ OH的OH(X〜2II:v“ = 0)的新生分布显示出大量的内部激发,具有低和双峰特征。不具有自旋轨道或A双峰倾向的高N''组分。与先前的动力学结果不同,在总体分析和与统计理论比较的基础上,建议仅通过直接H原子抽象过程进行标题反应可以从分子水平上的两种竞争机制来描述:直接提取过程和比率为1.25:1的间接短暂存在的加成-络合物形成过程。

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