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REACTIONS OF O(P-3) WITH ALKYNES - THE CO AND H ATOM CHANNELS

机译:O(P-3)与烯烃的反应-CO和H原子通道

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This is the second in a series of papers on the reaction of O(P-3) with alkynes in which the internal state distribution of some products are studied. The first paper dealt with acetylene whose two product channels are CO+CH2 and H+HCCO. The present paper deals with the reactions of a series of higher alkynes; however, just the CO release and the H atom release channels were studied. The CO product was rotationally and vibrationally cold in every case. We therefore infer that, except possibly for acetylene, the initial ketocarbene undergoes intersystem crossing to a singlet state and isomerizes to a substituted ketene which then dissociates through a linear C-C-O transition state. The absence of CO vibration energy implies that the energy taken from the initially formed C-O bond to facilitate a 1,2 migration is not returned. The large H atom translational energy implies that the H atom is released simultaneously with the formation of a radical of high resonance energy. Finally, the CO and H atom yields decrease in the longer alkynes, presumably because the dominant reaction channel becomes C-C bond breaking leading to radical pair formation. (C) 1996 American Institute of Physics. [References: 27]
机译:这是有关O(P-3)与炔烃反应的系列论文中的第二篇,其中研究了某些产物的内部状态分布。第一篇论文涉及乙炔,乙炔的两个产物通道是CO + CH2和H + HCCO。本文研究了一系列高级炔烃的反应。然而,仅研究了CO释放和H原子释放通道。在每种情况下,CO产品都是旋转和振动冷的。因此,我们推断,除了乙炔外,初始酮卡宾会经历系统间相交成单重态并异构化为取代的乙烯酮,然后通过线性C-C-O过渡态解离。没有CO振动能量意味着从最初形成的C-O键中促进1,2迁移的能量不会返回。大的H原子翻译能意味着H原子与高共振能自由基的形成同时被释放。最后,在较长的炔烃中,CO和H原子的收率降低,可能是因为主要的反应通道变成C-C键断裂导致自由基对的形成。 (C)1996年美国物理研究所。 [参考:27]

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