首页> 外文期刊>European journal of organic chemistry >Theoretical Study of 1,3-Dipolar Cycloaddtion Reactions with Inverse Electron Demand-A DFT Study of the Lewis Acid Catalyst and Solvent Effects in the Reaction of Nitrones with Vinyl Ethers
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Theoretical Study of 1,3-Dipolar Cycloaddtion Reactions with Inverse Electron Demand-A DFT Study of the Lewis Acid Catalyst and Solvent Effects in the Reaction of Nitrones with Vinyl Ethers

机译:1,3-偶极环加成反应与反电子需求的理论研究-路易斯酸催化剂的DFT研究和硝基与乙烯基醚反应中的溶剂效应

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摘要

The molecular mechanism for the inverse electron demand 1,3-dipolar cycloadditon of nitrones with vinyl ethers has been characterized using density functional theory methods with the B3LYP functional and the 6-31G~* basis set. Relative rates, regioselectivity, endo/exo stereoselectivity, Lewis acid catalyst and solvent effects are analyzed and discussed. Four reactive channels associated with the formation of the pairs of diasteromeric regioisomers have been characterized. Analysis of the geometries of the corresponding transition structures shows that the reaction in the gas phase takes place by an asynchronous concerted mechanism. These 1,3-dipolar cycloadditons present a large ortho regioselectivity, while the eox stereoselectivity depends on steric hidrance that appears along the endo approach. The inclusion of Lewis acids and solvent effects increase the asynchronicity and contribute a rate accelerationdue to a decrease of the activation enthalpies associated with the most favorable ortho reactive channels. Both increase the electrophilic character of the nitrone, changing the mechanism;these cycloadditions take place by means of a nucleophilic attack of the vinyl ether on the Lewis acid coordinated nitrone,with concomitant ring closure, and without participation of an intermediate.
机译:利用具有B3LYP官能团和6-31G〜*基组的密度泛函理论方法表征了硝基醚与乙烯基醚的反电子需量的1,3-偶极环己二酮的分子机理。分析和讨论了相对速率,区域选择性,内/外立体选择性,路易斯酸催化剂和溶剂效应。已经表征了与非对映体区域异构体对的形成相关的四个反应性通道。对相应过渡结构的几何形状的分析表明,气相中的反应是通过异步协同机制发生的。这些1,3-偶极环加成物具有较大的邻位区域选择性,而环氧立体选择性则取决于沿内膜途径出现的空间位阻。路易斯酸的加入和溶剂作用增加了异步性,并且由于与最有利的邻位反应性通道相关的活化焓的降低而促进了速率加速。两者都增加了腈的亲电特性,改变了机理;这些环加成反应是通过乙烯基醚对路易斯酸配位的腈的亲核攻击而发生的,同时伴随着闭环,并且没有中间体的参与。

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