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Evidences for the key role of hydrogen bonds in nucleophilic aromatic substitution reactions

机译:氢键在亲核芳族取代反应中的关键作用的证据

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The effect of hydrogen bonds on the fate of nucleophilic aromatic substitutions (S _NAr) has been studied in silico using a density functional theory approach in the condensed phase. The importance of these hydrogen bonds can explain the "built-in solvation" model of Bunnett concerning intermolecular processes between halogenonitrobenzenes and amines. It is also demonstrated that it can explain experimental results for a multicomponent reaction (the Ugi-Smiles coupling), involving an intramolecular S _NAr (the Smiles rearrangement) as the key step of the process. Modeling reveals that when an intramolecular hydrogen bond is present, it lowers the activation barrier of this step and enables the multicomponent reaction to proceed.
机译:在缩合相中使用密度泛函理论方法在计算机上研究了氢键对亲核芳香族取代基(S_NAr)命运的影响。这些氢键的重要性可以解释邦尼特关于卤代硝基苯与胺之间的分子间过程的“内在溶剂化”模型。还证明了它可以解释涉及分子内S_NAr(Smiles重排)的多组分反应(Ugi-Smiles偶联)的实验结果,是该过程的关键步骤。建模表明,当存在分子内氢键时,它会降低该步骤的活化势垒,并使多组分反应得以进行。

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