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Dramatic Acceleration of the Menschutkin Reaction and Distortion of Halide Leaving-Group Order

机译:孟舒特金反应的显着加速和卤化物离去基团畸变

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摘要

Compared to structurally related linear trialkylamines, a simple macrocyclic amine with an anion-binding cavity exhibits very large rate enhancements (> 10~5) for stoichiometric N-alkylation with primary alkyl, allyl, and benzyl halides in the weakly polar solvent CDCk_3. There is also a major distortion of the halide leaving-group order. For example, with benzyl halides the relative leaving-group order with a control amine is Cl (1) < Br (71) < I (160), whereas the leaving-group order with the macrocyclic amine is I (0.4) < Cl (1) < Br (8.5). Reaction with the macrocyclic amine is inhibited by the addition of DMSO, which is unusual because the Menschutkin reaction is normally enhanced by the presence of a polar aprotic solvent. Competitive inhibition studies indicate that the reaction proceeds through a prereaction complex. Effective molarities for the subsequent unimolecular N-alkylation step with 4-t-butylbenzyl halides are 4-t-BuBnCl (62 000 M) > 4-t-BuBnBr (2200 M) > 4-t-BuBnI (35 M); thus, the free energy of activation is selectively decreased for organohalides having smaller and more charge dense leaving groups. Likely reasons for this selective enhancement effect are: (a) increased transition-state stabilization due to hydrogen bonding in the macrocyclic pocket and (b) reduced entropic penalty in the transition state due to an increased fraction of prereaction complexes that are oriented in a near attack conformation. The study suggests that it should be possible to develop highly reactive macrocyclic amines that selectively sense or scavenge carcinogenic haloalkanes from the atmosphere.
机译:与结构相关的线性三烷基胺相比,具有弱阴离子结合腔的简单大环胺在弱极性溶剂CDCk_3中与伯烷基,烯丙基和苄基卤化物进行化学计量的N-烷基化时,具有非常大的速率增强(> 10〜5)。卤化物的离去基序也有很大的变形。例如,对于卤化苄,与对照胺的相对离去基顺序为Cl(1) 4-t-BuBnBr(2200 M)> 4-t-BuBnI(35 M);因此,对于具有较小且电荷密集的离去基团的有机卤化物,选择性地降低了活化的自由能。这种选择性增强作用的可能原因是:(a)由于大环口袋中的氢键而增加了过渡态的稳定性,以及(b)由于增加了在近端取向的预反应复合物的比例,从而降低了过渡态中的熵损失。攻击形态。研究表明,应该有可能开发出高反应性的大环胺,以选择性地从大气中感应或清除致癌的卤代烷烃。

著录项

  • 来源
    《The Journal of Organic Chemistry》 |2007年第25期|p.9663-9668|共6页
  • 作者单位

    Department of Chemistry and Biochemistry and Walther Cancer Research Center, University of Notre Dame, Notre Dame, Indiana 46556;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

  • 入库时间 2022-08-18 00:02:29

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