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Paired electrolysis enabled annulation for the quinolyl-modification of bioactive molecules.

Shiqi YouMengyao RuanCuifen LuLi LiuYue WengGuichun YangShengchun WangHesham AlhumadeAiwen LeiMeng Gao
Published in: Chemical science (2022)
A paired electrolysis enabled cascade annulation that enables the efficient synthesis of highly functionalized quinoline-substituted bioactive molecules from readily available starting materials is reported. Using this methodology, two goals, namely, the direct synthesis of quinolines and the introduction of quinoline moieties to bioactive molecules, can be simultaneously achieved in one simple operation. The use of electroreduction for the activation of isatin, together with the further anodic oxidation of KI to catalytically result in a cascade annulation, highlight the unique possibilities associated with electrochemical activation methods. This transformation can tolerate a wide range of functional groups and can also be used as a functionalization tactic in pharmaceutical research as well as other areas.
Keyphrases
  • molecular docking
  • molecularly imprinted
  • ionic liquid
  • quantum dots
  • tissue engineering
  • nitric oxide
  • high resolution
  • mass spectrometry
  • solid phase extraction