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Ni-Catalyzed Asymmetric Hydrophosphination of Unactivated Alkynes.

Xu-Teng LiuXue-Yu HanYue WuYing-Ying SunLi GaoZhuo HuangQing-Wei Zhang
Published in: Journal of the American Chemical Society (2021)
The practical synthesis of P-stereogenic tertiary phosphines, which have wide applications in asymmetric catalysis, materials, and pharmaceutical chemistry, represents a significant challenge. A regio- and enantioselective hydrophosphination using cheap and ubiquitous alkynes catalyzed by a nickel complex was designed, in which the toxic and air-sensitive secondary phosphines were prepared in situ from bench-stable secondary phosphine oxides. This methodology has been demonstrated with unprecedented substrate scope and functional group compatibility to afford electronically and structurally diversified P(III) compounds. The products could be easily converted into various precursors of bidentate ligands and organocatalysts, as well as a variety of transition-metal complexes containing both P- and metal-stereogenic centers.
Keyphrases
  • transition metal
  • room temperature
  • solid state
  • metal organic framework
  • drug discovery
  • carbon nanotubes
  • reduced graphene oxide
  • ionic liquid