首页> 外文期刊>Journal of the Chemical Society. Perkin Transactions 2 >Governing organic reactions through secondary orbital interactions. Semiempirical and density functional theory study of catalyzed cycloaddition reactions between pyrrole and ether dienophiles
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Governing organic reactions through secondary orbital interactions. Semiempirical and density functional theory study of catalyzed cycloaddition reactions between pyrrole and ether dienophiles

机译:通过次级轨道相互作用控制有机反应。吡咯与醚二烯亲和体之间环加成反应的半经验和密度泛函理论研究

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A combination of density functional and semiempirical computational studies of cycloaddition reactions with an activated pyrrole and a specially designed dienophile were performed to study electronic interactions and rearrangements that govern cycloaddition reactions. Several very simple principles, such as bond order, uniformity, and secondary orbital interactions were used to follow the reaction paths and the reaction outcomes were determined. It was demonstrated that the localization of double bonds in the ring would increase the reactivity. The reaction should proceed through the transition state that will have the most uniform ring bond order distribution. It was also demonstrated that secondary orbital interactions between reactants, such as hydrogen bonding, could be the curtailing factor that determines the reaction outcome. To obtain a better understanding of the reaction transformations, nonbonding interactions in the reactants' complexes and their isomeric transition states were discussed.
机译:结合了功能性和半经验的环加成反应与活化吡咯和特殊设计的亲双烯体的计算研究,以研究控制环加成反应的电子相互作用和重排。几个非常简单的原理,例如键序,均匀性和次级轨道相互作用被用于遵循反应路径并确定了反应结果。结果表明,环中双键的定位将增加反应性。反应应通过过渡态进行,该过渡态将具有最均匀的环键顺序分布。还证明了反应物之间的次级轨道相互作用(例如氢键)可能是决定反应结果的缩减因素。为了更好地理解反应转化,讨论了反应物络合物中的非键相互作用及其异构体过渡态。

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