Senapati Siddhartha Kumar, Pal Anit, Adhikari Priyanka, Das Animesh
Department of Chemistry, Indian Institute of Technology Guwahati, Guwahati, Assam, 781039, India.
Chemistry. 2025 Aug 28:e02094. doi: 10.1002/chem.202502094.
A Brønsted acidic ionic liquid (BAIL)-catalyzed one-pot tandem reduction of quinoline to tetrahydroquinoline (THQ) followed by reductive alkylation by the aldehyde has been demonstrated under mild reaction conditions with a shorter reaction time. This step-economical synthetic approach is suitable for late-stage functionalization of complex bioactive molecules. The reaction is highly chemoselective and tolerates a wide range of reducible-sensitive functional groups. The current reductive N-alkylation approach was also successfully utilized to synthesize novel tricyclic oxazino-fused-tetrahydroquinoline/benzoxazine compounds via tandem reductive cyclization of 1-aryl-2-(8-quinolinyloxy) ethanones. Further reductive protocol has been applied for the synthesis of antiarrhythmic drug nicainoprol and tubulin polymerization inhibitor efficiently. Notably, BAIL was easily recovered and reused multiple times without a considerable loss in catalytic activity. The elucidation of the underlying mechanism was achieved through a combination of several control experiments, kinetic studies, and isotopic labelling experiments. This study offers a new reaction pathway for the reduction of quinoline, in which BAIL facilitates proton transfer through a distinctive hydrogen bonding ion-pair mechanism.
已证明在温和的反应条件下,用较短的反应时间,布朗斯特酸性离子液体(BAIL)催化喹啉一锅串联还原为四氢喹啉(THQ),随后醛进行还原烷基化反应。这种步骤经济的合成方法适用于复杂生物活性分子的后期功能化。该反应具有高度的化学选择性,并且能耐受多种对还原敏感的官能团。目前的还原N-烷基化方法还成功地用于通过1-芳基-2-(8-喹啉氧基)乙酮的串联还原环化合成新型三环恶嗪并稠合四氢喹啉/苯并恶嗪化合物。进一步的还原方案已有效地应用于抗心律失常药物尼卡洛尔和微管蛋白聚合抑制剂的合成。值得注意的是,BAIL易于回收并多次重复使用,催化活性没有明显损失。通过一系列对照实验、动力学研究和同位素标记实验相结合,阐明了潜在的反应机理。本研究为喹啉的还原提供了一条新的反应途径,其中BAIL通过独特的氢键离子对机制促进质子转移。