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Theoretical study on mechanism of reaction between tert-butyl isocyanide and dimethyl acetylenedicarboxylate in presence of ethanethiol or thiophenol

机译:在乙硫醇或噻吩酚存在下叔丁基异氰化物与乙酰二羧酸二甲酯反应机理的理论研究

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摘要

The mechanism of the multicomponent reaction between tert-butyl isocyanide and dimethyl acetylenedicarboxylate in presence of ethanethiol and thiophenol (as SH-acid) was investigated theoretically. According to quantum-mechanical computations, four different pathways (I, II, III, and IV) were predicted for this reaction. The potential energy of all structures participating along the different reaction paths was evaluated. Also, the geometry of all structures (including reactants, transition states, intermediates, and products) was optimized in gas phase to determine the best reaction path and most stable products. To verify the effect of solvent on the potential energy surfaces, dichloromethane and acetone were subjected to condensed-phase calculations using the polarizable continuum model. The theoretical results suggested a reasonable mechanism for each path, indicating that the first step of each pathway was rate determining. Finally, natural bond orbital analysis was applied for further understanding of the molecular interactions.
机译:在理论上研究了叔丁基异氰化物和乙酰二羧酸二甲基二羧酸二甲基二甲酯之间的多组分反应的机理。根据量子 - 机械计算,预测该反应的四种不同的途径(I,II,III和IV)。评价参与不同反应路径的所有结构的潜在能量。而且,在气相中优化了所有结构(包括反应物,转变状态,中间体和产品)的几何形状,以确定最佳的反应路径和最稳定的产品。为了验证溶剂对电位能表面上的影响,使用可极化的连续体模型对二氯甲烷和丙酮进行冷凝相计算。理论结果表明每个路径的合理机制,表明每个途径的第一步是速率确定。最后,应用天然键轨道分析以进一步了解分子相互作用。

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