首页> 外文期刊>Structural Chemistry >A mechanistic MEDT study of the competitive catalysed [4+2] and [2+2] cycloaddition reactions between 1-methyl-1-phenylallene and methyl acrylate: the role of Lewis acid on the mechanism and selectivity
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A mechanistic MEDT study of the competitive catalysed [4+2] and [2+2] cycloaddition reactions between 1-methyl-1-phenylallene and methyl acrylate: the role of Lewis acid on the mechanism and selectivity

机译:竞争性催化的机械药物研究[4 + 2]和[2 + 2]环加成反应在1-甲基-1-苯基和丙烯酸甲酯之间:Lewis酸对机制和选择性的作用

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The selectivity and the nature of the mechanism of the competitive Lewis acid catalysed [4+2]/[2+2] cycloaddition reactions of 1-methyl-1-phenylallene (MPA) with methylacrylate (MA) have been theoretically studied within the Molecular Electron Density Theory using DFT methods at the B3LYP/6-31G(d) theoretical level. DFT reactivity indices indicate that MPA is a strong nucleophile and the LA-MA complex is a strong electrophile. The coordination of LA to MA enhances the reaction rate and increases the asynchronicity of the [4+2] CA reaction, changes the nature of the mechanism from one step to stepwise for the [2+2] CA reaction and increases the polar character of these cycloaddition reactions, which become demands a relatively low activation energy. Analysis of different energy profiles indicates that these competitive LA-catalysed CA reactions favour the formation of a mixture of meta regioisomers in both types of cycloaddition, in which the [4+2] cycloadducts were obtained in majority amount, in agreement with the experiment. Analysis based on Electron Localisation Function topological shows that the favoured [4+2] CA reaction takes place through a non-concerted two-stage one-step mechanism.
机译:在理论上,在分子内理论上研究了1-甲基-1-苯基 - 苯基(MPa)的竞争性路易斯酸催化的机理[4 + 2] / [2 + 2]环加成反应的机理电子密度理论在B3LYP / 6-31G(D)理论水平下使用DFT方法。 DFT反应性指数表明MPa是强核官,La-Ma络合物是强大的亲电。 LA对Ma的协调增强了反应速率并增加了[4 + 2] Ca反应的异步性,从一步改变了[2 + 2] Ca反应的步骤,并增加了极性特征这些环加成反应,这导致激活能量相对较低。对不同能量谱的分析表明,这些竞争性的LA催化的Ca反应有利于形成两种类型的环加成中的Meta测定剂的混合物,其中[4 + 2]环绕性在多数量中获得多数,同意实验。基于电子定位函数拓扑的分析表明,受青睐的[4 + 2] Ca反应通过非齐齐齐先的两级一步机制进行。

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