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Hydrogen Bonding Phase-Transfer Catalysis with Ionic Reactants: Enantioselective Synthesis of γ-Fluoroamines.

Giulia RoagnaDavid M H AscoughFrancesco IbbaAnna Chiara ViciniAlberto FontanaKirsten E ChristensenAldo PeschiulliDaniel OehlrichAntonio MisaleAndres A TrabancoRobert S PatonGabriele PupoVéronique Gouverneur
Published in: Journal of the American Chemical Society (2020)
Ammonium salts are used as phase-transfer catalysts for fluorination with alkali metal fluorides. We now demonstrate that these organic salts, specifically azetidinium triflates, are suitable substrates for enantioselective ring opening with CsF and a chiral bis-urea catalyst. This process, which highlights the ability of hydrogen bonding phase-transfer catalysts to couple two ionic reactants, affords enantioenriched γ-fluoroamines in high yields. Mechanistic studies underline the role of the catalyst for phase-transfer, and computed transition state structures account for the enantioconvergence observed for mixtures of achiral azetidinium diastereomers. The N-substituents in the electrophile influence the reactivity, but the configuration at nitrogen is unimportant for the enantioselectivity.
Keyphrases
  • ionic liquid
  • room temperature
  • highly efficient
  • metal organic framework
  • magnetic resonance
  • computed tomography
  • transition metal
  • solid state
  • crystal structure
  • capillary electrophoresis