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Concurrent Formation of N-H Imines and Carbonyl Compounds by Ruthenium-Catalyzed C-C Bond Cleavage of β-Hydroxy Azides.

Jeong Min LeeDae Young BaeJin Yong ParkHwi Yul JoEunsung LeeYoung Ho RheeJaiwook Park
Published in: Organic letters (2020)
A commercial cyclopentadienylrutenium dicarbonyl dimer ([CpRu(CO)2]2) efficiently catalyzes the formation of N-H imines and carbonyl compounds simultaneously from β-hydroxy azides via C-C bond cleavage under visible light. Density functional theory calculations for the cleavage reaction support the mechanism involving chelation of alkoxy azide species and liberation of nitrogen as the driving force. The synthetic utility of the reaction was demonstrated by a new amine synthesis promoted by chemoselective allylation of imine and synthesis of isoquinoline.
Keyphrases
  • density functional theory
  • visible light
  • molecular dynamics
  • dna binding
  • electron transfer
  • transcription factor
  • single molecule
  • room temperature
  • locally advanced
  • molecular dynamics simulations