首页> 外文期刊>The Journal of Organic Chemistry >Transition State Gauche Effects Control the Torquoselectivities of the Electrocyclizations of Chiral 1-Azatrienes
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Transition State Gauche Effects Control the Torquoselectivities of the Electrocyclizations of Chiral 1-Azatrienes

机译:过渡态Gauche效应控制手性1-Azatrienes电环化的Torquoselectives。

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Hsung et al. have reported a series of torquoselective electrocyclizations of chiral 1-azahexa-1E,3Z,5E-trienes that yield functionalized dihydropyridines. To understand the origins of the torquoselectivities of these azaelectrocydizations, we modeled these electrocyclic ring closures using the M06-2X density functional. A new stereochemical model that rationalizes the observed 1,2 stereoinduction emerges from these computations. This model is an improvement and generalization of the "insidealkoxy" model used to rationalize stereoselectivities of the 1,3-dipolar cydoaddition of chiral allyl ethers and emphasizes a stabilizing hyperconjugative effect, which we have termed a transition state gauche effect. This stereoelectronic effect controls the conformational preferences at the electrocyclization transition states, and only in one of the allowed disrotatory electrocyclization transition states is the ideal stereoelectronic arrangement achieved without the introduction of a steric clash. Computational experiments confirm the role of this effect as a stereodeterminant since substrates with electropositive groups and electronegative groups have different conformational preferences at the transition state and undergo ring closure with divergent stereochemical outcomes. This predicted reversal of stereoselectivity for the ring closures of several silyl substituted azatrienes have been demonstrated experimentally.
机译:Hsung等。已经报道了一系列手性1-氮杂六-1E,3Z,5E-三烯的选择性热环化,产生功能化的二氢吡啶。为了了解这些氮杂电环化的选择性的起源,我们使用M06-2X密度泛函对这些电环闭合进行了建模。从这些计算中得出了使观察到的1,2立体诱导合理化的新的立体化学模型。该模型是“ insidealkoxy”模型的改进和推广,该模型用于合理化手性烯丙基醚的1,3-偶极环加成反应的立体选择性,并强调了稳定的超共轭效应,我们称其为过渡态gauche效应。这种立体电子效应控制着在电环化转变态的构象偏好,并且只有在允许的旋转电环化转变态之一中,才可以实现理想的立体电子排列而不会引入空间碰撞。计算实验证实了这种效应作为立体决定因素的作用,因为带有正电基团和负电基团的底物在过渡态具有不同的构象偏好,并且经历了闭环而立体化学结果不同。实验证明了这种对几种甲硅烷基取代的氮杂三烯的闭环立体选择性的预期逆转。

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