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Regiodivergent and Enantioselective Synthesis of Cyclic Sulfones via Ligand-Controlled Nickel-Catalyzed Hydroalkylation.

Chao FanUttam DhawaDeyun QianDavor SakicJennifer MorelXile Hu
Published in: Angewandte Chemie (International ed. in English) (2024)
Cyclic sulfones have demonstrated important applications in drug discovery. However, the catalytic and enantioselective synthesis of chiral cyclic sulfones remains challenging. Herein, we develop nickel-catalyzed regiodivergent and enantioselective hydroalkylation of sulfolenes to streamline the synthesis of chiral alkyl cyclic sulfones. The method has broad scope and high functional group tolerance. The regioselectivity can be controlled by ligands only. A neutral PYROX ligand favors C3-alkylation whereas an anionic BOX ligand favors C2-alkylation. This control is kinetic in origin as the C2-bound Ni intermediates are always thermodynamically more stable. Reactivity study of a wide range of relevant Ni intermediates reveal a Ni I /Ni III catalytic cycle with a Ni II -H species as the resting state. The regio- and enantio-determining step is the insertion of this Ni II -H species into 2-sulfolene. This work provides an efficient catalytic method for the synthesis of an important class of organic compounds and enhances the mechanistic understanding of Ni-catalyzed stereoselective hydroalkylation.
Keyphrases
  • metal organic framework
  • resting state
  • transition metal
  • functional connectivity
  • drug discovery
  • room temperature
  • ionic liquid
  • dna methylation