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How to drive imine-enamine tautomerism of pyronic derivatives of biological interest - A theoretical and experimental study of substituent and solvent effects

机译:如何驱动具有生物意义的吡喃衍生物的亚胺-烯胺互变异构-取代基和溶剂效应的理论和实验研究

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An investigation of the tautomerism of five series of aminated pyronic compounds of pharmacological interest was carried out using NMR experiments and standard quantum mechanical B3LYP/6-311 +G** calculations. The obtained results indicate that among four possible tautomers, imine and enamine forms are the two predominating ones in the gas phase as well as in solution. Depending on the nature of the substituting group, the enamine or the imine form is the most stable tautomer, the calculations being in agreement with experiment. The calculated equilibrium constants in the gas phase and in solution show that the enamine form is stabilized by polar solvents, in all cases. NBO analysis explains well the predominance of a form over another one when changing a substituting group. We give indications on how to favour the imine form which is preferred for synthesis purposes.
机译:使用NMR实验和标准量子力学B3LYP / 6-311 + G **计算,对五个系列具有药理学意义的胺化热解化合物的互变异构现象进行了研究。所得结果表明,在四种可能的互变异构体中,亚胺和烯胺形式是气相和溶液中的两种主要形式。根据取代基的性质,烯胺或亚胺形式是最稳定的互变异构体,其计算与实验一致。在气相和溶液中计算出的平衡常数表明,在所有情况下,烯胺形式都可以被极性溶剂稳定。 NBO分析很好地说明了更换替代组时一种形式优于另一种形式的优势。我们给出了如何支持亚胺形式的指示,该亚胺形式优选用于合成目的。

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