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Mechanistic Studies on the Cyclization of (Z)-1,2,4-Heptatrien-6-yne in Methanol: A Possible Nonadiabatic Thermal Reaction

机译:(Z)-1,2,4-庚七烯-6-炔在甲醇中环化的机理研究:可能的非绝热反应

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Myers et al. pyrolyzed (Z)-1,2,4-heptatrien-6-yne (1) in methanol at 100℃ and observed benzylmethyl ether (2) as a major product and 2-phenylethanol (3) as a minor product. If a biradical intermediate, such as the open-shell singlet state of α,3-didehydrotoluene (4), was the only intermediate generated by the cyclization, then reaction with methanol might be expected to afford 2-phenylethanol as the principal product. The question that has been of interest since its first discovery is the origin of the principal product of the title reaction, benzylmethyl ether. This report considers three mechanisms for formation of the benzylmethyl ether: direct methanol participation in the cyclization of the reactant, partial ether formation from the biradical 4, or involvement of the closed-shell zwitterionic state of α,3-didehydrotoluene (5). A fourth mechanism, involving a cyclic allene intermediate, has been ruled out by earlier studies. In the present work, the first two mechanisms are ruled out by experiment and/or calculation. The remaining one, involving the zwitterion, is shown to be consistent with experimental and computational data only if a component of the reaction follows a nonadiabatic course.
机译:Myers等。在100℃于甲醇中热解(Z)-1,2,4-庚七烯-6-炔(1),观察到苄基甲基醚(2)为主要产物,2-苯基乙醇(3)为次要产物。如果双自由基中间体(如α,3-二氢甲苯(4)的开壳单重态)是通过环化生成的唯一中间体,则可以预期与甲醇的反应将产生2-苯基乙醇作为主要产物。自首次发现以来一直引起关注的问题是标题反应的主要产物苄基甲基醚的起源。该报告考虑了形成苄基甲基醚的三种机制:直接甲醇参与反应物的环化,由双自由基4形成部分醚或参与α,3-二氢二甲苯的闭壳两性离子态(5)。较早的研究已经排除了涉及环状烯丙基中间体的第四种机理。在目前的工作中,通过实验和/或计算排除了前两种机制。仅当反应的组成部分遵循非绝热过程时,其余涉及两性离子的化合物才显示与实验和计算数据一致。

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