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DFT study on reaction mechanisms of propylamine and dimethyl acetylenedicarboxylate with 1,3-dimethylalloxan

机译:DFT研究丙胺与乙炔二甲酸二甲酯与1,3-二甲基四氧六环的反应机理

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摘要

In an attempt to explore the mechanism for the multicomponent reaction of propylamine and dimethyl acetylenedicarboxylate with 1,3-dimethylalloxan, two reaction mechanisms were investigated using density function theory (DFT) at the B3LYP/6-311++G(d,p) level of theory, including the solvent effect of dichloromethane simulated by PCM. One is proton migration mechanism and the other is the new mechanism that avoids all the complicated proton transfer processes along a simple route. The new mechanism is the most energetically favorable pathway. Specifically, it contains two tandem processes: Firstly, the propylamine reacts with dimethyl acetylenedicarboxylate to form a zwitterionic intermediate. Secondly, it is a stepwise [2. +. 3] cycloaddition of the zwitterionic intermediate with 1,3-dimethylalloxan to give the final product via elimination of a methanol molecule. The reaction can occur easily at room temperature, which is in good agreement with available experiment.
机译:为了探索丙胺和乙酰二羧酸二甲酯与1,3-二甲基四氧六环的多组分反应机理,使用密度泛函理论(DFT)在B3LYP / 6-311 ++ G(d,p)上研究了两种反应机理。理论水平,包括PCM模拟的二氯甲烷的溶剂作用。一个是质子迁移机制,另一个是新机制,它避免了沿一条简单路线的所有复杂质子转移过程。新机制是最有力的有利途径。具体来说,它包含两个串联过程:首先,丙胺与乙炔二羧酸二甲酯反应形成两性离子中间体。其次,它是逐步的[2。 +。 3]两性离子中间体与1,3-二甲基四氧六环的环加成反应通过消除甲醇分子得到最终产物。该反应在室温下很容易发生,这与现有的实验非常吻合。

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