首页> 外文期刊>The Journal of Organic Chemistry >Observation of a Tricyclic[4.1.0.0(2,4)]heptane During a Michael Addition-Ring Closure Reaction and a Computational Study on Its Mechanism of Formation
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Observation of a Tricyclic[4.1.0.0(2,4)]heptane During a Michael Addition-Ring Closure Reaction and a Computational Study on Its Mechanism of Formation

机译:在迈克尔附加环闭环反应期间观察三环[4.1.0.0(2,4)]庚烷及其形成机制的计算研究

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We describe the formation of a bis-cyclopropaneproduct, a tricyclic[4.1.0.02,4]heptane, that is formed during a Johnson-Corey-Chaykovsky reaction on a cyclopentenone. Two (of four possible) bicyclic products are selectively formed by addition of a COOEt-stabilized sulfur ylide onto the Michael acceptor. The tricyclic product is formed subsequently via a retro Michael elimination of a hindered ether followed by addition of a further cyclopropyl moiety, affecting only one of the two bicyclic products initially formed. The experimental reaction outcome was rationalized using density functional theory (DFT), investigating the different Michael-addition approaches of the sulfur ylide, the transition state (TS) energies for the formation of possible zwitterionic intermediates and subsequent reactions that give rise to cyclopropanation. Selective formation of only two of the four possible products occurs due to the epimerization of unreactive intermediates from the other two pathways, as revealed by energy barrier calculations. The formation of the tricyclic product was rationalized by evaluation of energy barriers for proton abstraction required to form the intermediate undergoing the second cyclopropanation. The selectivity-guiding factors discussed for the single and double cyclopropanation of this functionalized Michael-acceptor will be useful guidelines for the synthesis of future singly and doubly cyclopropanated compounds.
机译:我们描述了一种双 - cyclopropaneproduct,三环[4.1.0.02,4]庚烷,即在环戊烯酮一个约翰逊 - 科里 - 柴可夫斯基反应过程中形成的形成。两个(四种可能的)双环产品通过添加COOEt烷基稳定硫叶立德到迈克尔受体选择性地形成。三环产物通过逆Michael消除随后形成的受阻醚,随后加入另外的环丙基部分的,仅影响最初形成的两个双环产品之一。实验结果反应使用密度泛函理论(DFT)合理化,调查不同迈克尔加成中的硫叶立德的方法中,过渡态(TS)为能量的可能的两性离子中间体和随后的反应,其产生的环丙烷的形成。的仅四个可能的产品两种选择性形成的发生是由于未反应的中间体的其他两个途径中的差向异构化,所揭示的能量势垒的计算。三环产物的形成是由对质子抽象能量壁垒评价合理化需要形成中间经历第二环丙烷化。此官能迈克尔受体的单,双环丙烷化中讨论的选择性导因素将是未来的合成单独有用的准则和双环丙烷化合物。

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