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Competing sigmatropic shift rearrangements in excited allyl radicals

机译:竞争性烯丙基自由基中的竞争性σ位移重排

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The competition between rearrangement of the excited allyl radical via a 1,3 sigmatropic shift versus sequential 1,2 shifts has been observed and characterized using isotopic substitution, laser excitation, and molecular beam techniques. Both rearrangements produce a 1-propenyl radical that subsequently dissociates to methyl plus acetylene. The 1,3 shift and 1,2 shift mechanisms are equally probable for CH2CHCH2, whereas the 1,3 shift is favored by a factor of 1.6 in CH2CDCH2. The translational energy distributions for the methyl and acetylene products of these two mechanisms are substantially different. Both of these allyl dissociation channels are minor pathways compared to hydrogen atom loss. (C) 2008 American Institute of Physics.
机译:已经观察到并通过同位素取代,激光激发和分子束技术表征了被激发的烯丙基自由基通过1,3σ位移与顺序1,2位移之间的竞争。两种重排均产生1-丙烯基,其随后解离为甲基加乙炔。 CH2CHCH2可能具有1,3移位和1,2移位机制,而CH2CDCH2中1,3移位受到1.6因子的偏爱。这两种机理的甲基和乙炔产物的平移能分布基本不同。与氢原子损失相比,这两个烯丙基解离通道都是次要途径。 (C)2008美国物理研究所。

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