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Sulfonylation of Five-Membered Aromatic Heterocycles Compounds through Nucleophilic Aromatic Substitution: Concerted or Stepwise Mechanism?

机译:通过亲核芳族取代的五元芳族杂环化合物的磺酰基化:协同还是逐步机制?

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摘要

Heterocyclic sulfones are relevant in medicinal chemistry, drug design and organic synthesis, and the mechanism of sulfonyla-tion of five-membered heterocycles is not clear. In this work, it is presented a computational study on the mechanism of sulfonylation of five-membered heterocycles compounds. Concerted and stepwise mechanisms for the nucleophilic aromatic substitution (S_NAr) involved in the reaction were examined. Effect of the neighbouring group (NG), heteroatom in the ring (HT), nucleophile (NU), and leaving group (LG) in fourteen reactions were examined. Analysis of the intrinsic reaction coordinate, reaction force, natural bond orbital (NBO) charges and bond indexes give a reasonable insight about the mechanism for the reactions studied. Results revealed activation free energies ranging from 20.8 kcal/mol up to 38.6 kcal/ mol. Reaction force analysis showed that structural changes in the reactant are the most important component associated with the energy of activation with more than 60% of the contribution. Most sulfonylation reactions in this study proceed through a concerted mechanism; only two occur though a stepwise-Meisenheimer-intermediate mechanism.
机译:杂环磺基与药物化学,药物设计和有机合成有关,五元杂环的磺酰拉磺酸盐机理尚不清楚。在这项工作中,介绍了一项有关五元杂环化合物磺酰基的机理的计算研究。检查了参与反应的亲核芳族取代(S_NAR)的协同和逐步机制。检查了相邻组(NG),环(HT)中的杂原子(NU),亲核试剂(NU)和离开组(LG)在14个反应中的影响。分析内在反应坐标,反应力,自然键轨道(NBO)电荷和键指数,对所研究反应的机制有了合理的见解。结果表明,激活的自由能范围从20.8 kcal/ mol到38.6 kcal/ mol。反应力分析表明,反应物的结构变化是与激活能量相关的最重要的组成部分,超过60%的贡献。这项研究中的大多数磺酰基反应通过协同的机制进行。虽然逐步 - 米森海默认中间机制只会发生两次。

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