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首页> 外文期刊>Beilstein journal of organic chemistry. >Why base-catalyzed isomerization of N-propargyl amides yields mostly allenamides rather than ynamides
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Why base-catalyzed isomerization of N-propargyl amides yields mostly allenamides rather than ynamides

机译:为什么碱催化的N-炔丙基酰胺异构化生成的主要是烯丙酰胺而不是乙酰胺

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The base-catalyzed isomerization of N-propargylamides or carbamates may furnish N-allenyl compounds (allenamides/allencarbamates) or further evolve to N-alkynyl compounds (ynamides or yncarbamates). The particular fate of this reaction varies from experiment to experiment and there is no clear rule for predicting the reaction outcome for a particular structure. With the support of ab initio and DFT computations, this work shows that observed results can be explained by assuming an exchange equilibrium between energetically close N-propargyl, allenyl and N-alkynyl forms and that the reaction outcome correlates to a particular equilibrium mixture. Due to the very small energy gap between the N-allenyl and N-alkynyl forms, small structural changes may easily alter the equilibrium position, explaining the variety of observed experimental results. Based on CBS-QB3 computations, the ωB97 functional provided reasonably accurate isomerization energies and could successfully predict the experimentally observed behavior for several examples from the literature.
机译:N-炔丙基酰胺或氨基甲酸酯的碱催化异构化可提供N-烯基化合物(烯丙酰胺/烯丙胺酸酯)或进一步演变为N-炔基化合物(乙酰胺或氨甲酸酯)。该反应的特定命运因实验而异,并且没有明确的规则预测特定结构的反应结果。在从头算和DFT计算的支持下,这项工作表明,可以通过假设能量上接近的N-炔丙基,烯丙基和N-炔基形式之间的交换平衡来解释观察到的结果,并且反应结果与特定的平衡混合物相关。由于N-烯基和N-炔基形式之间的能隙非常小,小的结构变化可能容易改变平衡位置,从而解释了观察到的实验结果的多样性。基于CBS-QB3计算,ωB97官能团提供了相当准确的异构化能量,并且可以成功地从文献中预测几个实例的实验观察到的行为。

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