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Dynamics of the O(~3P) + C2H2 reaction from crossed molecular beam experiments with soft electron ionization detection

机译:带有软电子电离检测的交叉分子束实验的O(〜3P)+ C2H2反应动力学

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The reaction between ground state oxygen atoms, O(~3P), and the acetylene molecule, C2H2, has been investigated in crossed molecular beam experiments with mass-spectrometric detection and time-of- flight analysis at three different collision energies, E_c = 34.4, 41.1 and 54.6 kJ mol~(-1). From product angular and velocity distribution measurements of the HCCO and CH2 products in the laboratory frame, product angular and translational energy distributions in the center-of-mass frame were determined. Measurements on the CH2 product were made possible by employing for product detection the recently implemented soft electron-ionization (El) technique with low-energy, tunable electrons, which has permitted suppressing interference coming from the dissociative ionization of reactants, products and background gases. It has been found that the title reaction leads only to two competing channels: H + HCCO (ketenyl) and CO + CH2 (triplet methylene). The branching ratio of cross sections between the two competing channels has been determined to be σ(HCCO)/[σ(HCCO) + σ(CH2)l = 0.79 ± 0.05, independent of collision energy within the experimental uncertainty. This value is in line with that obtained in the most recent and accurate kinetics determination at room temperature as well as with that predicted from recent theoretical calculations based on statistical rate theory and weak-collision master equation analysis and on dynamics surface-hopping quasiclassical trajectory calculations on-the-fly on coupled triplet/singlet ab initio potential energy surfaces. The firm assessment of the branching ratio as a function of translational energy for this important reaction, besides its fundamental significance, is of considerable relevance for the implementation of theoretical models of hydrocarbon . combustion.
机译:在交叉分子束实验中研究了基态氧原子O(〜3P)与乙炔分子C2H2之间的反应,该实验采用质谱检测和飞行时间分析在三种不同的碰撞能量下进行,E_c = 34.4 ,41.1和54.6 kJ mol〜(-1)。根据实验室框架中HCCO和CH2产品的产品角度和速度分布测量结果,确定了质心框架中产品的角度和平移能量分布。通过使用最近实施的具有低能,可调谐电子的软电子电离(El)技术进行产品检测,可以测量CH2产品,从而可以抑制来自反应物,产品和背景气体的解离电离的干扰。已经发现标题反应仅导致两个竞争的通道:H + HCCO(烯基)和CO + CH2(三重亚甲基)。已确定两个竞争通道之间的横截面分支比为σ(HCCO)/ [σ(HCCO)+σ(CH2)l = 0.79±0.05,与实验不确定性范围内的碰撞能量无关。该值与在室温下最新精确进行的动力学测定以及在基于统计速率理论和弱碰撞主方程分析以及动力学表面跳变准经典轨迹计算的最新理论计算中预测的值一致在三重态/单重态从头算势能面上实时飞行。除了具有根本的意义外,对这一重要反应的支化比作为转化能的函数的坚定评估,与烃理论模型的实施具有重要的意义。燃烧。

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