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The mechanism of the triple aryne–tetrazine reaction cascade: theory and experiment

机译:三重芳烃-四嗪反应级联的机理:理论与实验

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摘要

This article describes an experimental and computational investigation on the possible aryne reactivity modes in the course of the reaction of two highly energetic molecules, an aryne and a 1,2,4,5-tetrazine. Beyond the triple aryne–tetrazine (TAT) reaction, it was observed that combinations of several reactivity modes afford several heterocyclic compounds. Density Functional Theory (DFT) calculations of competition between a second Diels–Alder reaction and the nucleophilic addition pathways indicates the latter to be more favorable. Crossover experiments and computational study of the proton transfer step reveal that the reaction proceeds intermolecularly with the assistance of a water molecule, rather than intramolecularly. The resulting enamine intermediate was found to undergo either a stepwise formal [2 + 2] or [4 + 2] cycloaddition, and their energetic profiles were compared against each other. Isolation of an ene-product and a rearranged product shows the potential competition with oxidation/desaturation. These studies show how multiple arynes react with a highly reactive starting material and provide guidance for future applications of aryne-based multicomponent cascade reactions.
机译:本文介绍了在两个高能分子,芳烃和1,2,4,5-四嗪的反应过程中可能的芳烃反应模式的实验和计算研究。除了三重芳烃-四嗪(TAT)反应以外,还观察到几种反应模式的组合提供了几种杂环化合物。第二狄尔斯-阿尔德反应与亲核加成途径之间竞争的密度泛函理论(DFT)计算表明后者更有利。质子转移步骤的交叉实验和计算研究表明,该反应在水分子的帮助下在分子内进行,而不是在分子内进行。发现所得的烯胺中间体经历了逐步的形式[2 + 2]或[4 + 2]环加成,并将它们的能谱进行了相互比较。烯产物和重排产物的分离显示了与氧化/去饱和的潜在竞争。这些研究表明多种芳烃如何与高反应性原料发生反应,并为基于芳烃的多组分级联反应的未来应用提供指导。

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