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Enantioselective Phase-Transfer-Catalyzed Synthesis of Spirocyclic Azetidine Oxindoles.

Alexander J BoddyAditya K SahayEmma L RiversAndrew J P WhiteAlan C SpiveyJames A Bull
Published in: Organic letters (2024)
Spiro-3,2'-azetidine oxindoles combine two independently important pharmacophores in an understudied spirocyclic motif that is attractive for medicinal chemistry. Here, the enantioselective synthesis of these structures is achieved in up to 2:98 er through intramolecular C-C bond formation, involving activation of the substrate with a novel SF 5 -containing chiral cation phase-transfer (PT) catalyst. The products are readily elaborated/deprotected to afford medicinally relevant enantioenriched compounds. Control experiments suggest an interfacial PT mechanism, whereby catalytic asymmetric induction is achieved through the activation of the chloride leaving group.
Keyphrases
  • ionic liquid
  • room temperature
  • electron transfer
  • high resolution
  • molecular dynamics simulations
  • drug discovery
  • gold nanoparticles
  • quantum dots
  • transition metal