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Asymmetric Hydroboration of Heteroaryl Ketones by Aluminum Catalysis.

Yury LebedevIuliia PolishchukBholanath MaityMiguel Dinis Veloso GuerreiroLuigi CavalloMagnus Rueping
Published in: Journal of the American Chemical Society (2019)
A series of methyl aluminum complexes bearing chiral biphenol-type ligands were found to be highly active catalysts in the asymmetric reduction of heterocyclic ketones (S/C = 100-500, ee up to 99%). The protocol is suitable for a wide range of substrates and has a high tolerance to functional groups. The formed 2-heterocyclic-alcohols are valuable building blocks in drug discovery or can be used as ligands in asymmetric catalysis. Isolation and comprehensive characterization of the reaction intermediates support a catalysis cycle proposed by DFT calculations.
Keyphrases
  • drug discovery
  • density functional theory
  • solid state
  • visible light
  • randomized controlled trial
  • molecular dynamics
  • molecular dynamics simulations
  • molecular docking