Bisht Girish Singh, Dunchu Tenzin Dolkar, Gnanaprakasam Boopathy
Department of Chemistry, Indian Institute of Science Education and Research, 411008, Pune, India.
Chem Asian J. 2021 Mar 15;16(6):656-665. doi: 10.1002/asia.202001418. Epub 2021 Feb 9.
An efficient and new approach for the synthesis of spirooxindole 2H-azirines via intramolecular oxidative cyclization of 3-(amino(phenyl)methylene)-indolin-2-one derivatives in the presence of I and Cs CO under batch/continuous flow is described. This method is mild and facile to synthesize a variety of spirooxindole 2H-azirines derivatives in gram-scale. Furthermore, we have synthesized spiroaziridine derivatives from spirooxindole 2H-azirines derivatives via addition of Grignard reagent. In addition, we discloses an metal assisted attack of Grignard nucleophile at N-centre rather than C- of the spirooxindole 2H-azirines, which concurrently underwent ring opening of transient aziridines to afford N-substituted Z-3-(aminophenyl)indolin-2-one. A plausible mechanism for azirination and ring-opening reaction is also presented.
描述了一种在间歇/连续流动条件下,通过3-(氨基(苯基)亚甲基)-吲哚啉-2-酮衍生物在碘和碳酸铯存在下的分子内氧化环化反应合成螺环氧化吲哚2H-氮丙啶的高效新方法。该方法温和且易于以克级规模合成多种螺环氧化吲哚2H-氮丙啶衍生物。此外,我们通过添加格氏试剂从螺环氧化吲哚2H-氮丙啶衍生物合成了螺氮杂环丙烷衍生物。此外,我们还揭示了格氏亲核试剂在螺环氧化吲哚2H-氮丙啶的N中心而非C中心的金属辅助进攻,该进攻同时伴随着瞬态氮丙啶的开环,得到N-取代的Z-3-(氨基苯基)吲哚啉-2-酮。还提出了氮丙啶化和开环反应的合理机制。