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Characterization of the switch in the mechanism of an intramolecular Diels-Alder reaction

机译:分子内Diels-Alder反应机理中开关的表征

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[GRAPHICS] Changing the dienophile moiety of an intramolecular Diels-Alder (IMDA) cycloaddition from an allyl ether to an allenyl ether can dramatically change the regioselectivity. We hereby show by density functional theory computations that such unprecedented divergence is produced by an underlying change in the mechanism of the reaction. The allyl ether yields a fused tetrahydrofuran through a classical Diels-Alder reaction, whereas the allenyl ether yields a (methylidene)tetrahydropyran through a stepwise process. The latter reaction involves an extreme asynchronism in the bond-forming events with a diradicaloid intermediate that is stabilized by conjugation and synergistic (captodative) effects. Comparison with intermolecular model D-A reactions, which are concerted processes with various degrees of asynchrony, helps explain the change in regioselectivity for the IMDA reaction of allyl systems and the shift in mechanism for the IMDA reaction of the allenyl derivatives studied.
机译:[图谱]改变分子内狄尔斯-阿尔德(IMDA)环加成的亲二烯体部分从烯丙基醚到烯丙基醚可以显着改变区域选择性。我们在此通过密度泛函理论计算表明,这种前所未有的差异是由反应机理的根本变化产生的。烯丙基醚通过经典的Diels-Alder反应产生稠合的四氢呋喃,而烯丙基醚通过逐步过程产生(亚甲基)四氢吡喃。后者的反应与双自由基中间体在键形成事件中的极端异步性有关,该中间体通过结合和协同(俘获性)效应得以稳定。与分子间模型D-A反应的比较,这是不同程度的异步过程,有助于解释烯丙基体系IMDA反应的区域选择性变化和所研究的烯基衍生物IMDA反应机理的变化。

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