Publication | Closed Access
Ligand-Controlled Cobalt-Catalyzed Transfer Hydrogenation of Alkynes: Stereodivergent Synthesis of <i>Z</i>- and <i>E-</i>Alkenes
321
Citations
45
References
2016
Year
Chemical EngineeringTransfer HydrogenationEffective Selectivity ControlEngineeringStereodivergent SynthesisAlkene MetathesisCross-coupling ReactionOrganic ChemistryOrganometallic CatalysisCatalysisStereoselective SynthesisChemistryRational Catalyst DesignAsymmetric Catalysis
Herein, we report a novel cobalt-catalyzed stereodivergent transfer hydrogenation of alkynes to Z- and E-alkenes. Effective selectivity control is achieved based on a rational catalyst design. Moreover, this mild system allows for the transfer hydrogenation of alkynes bearing a wide range of functional groups in good yields using catalyst loadings as low as 0.2 mol %. The general applicability of this procedure is highlighted by the synthesis of more than 50 alkenes with good chemo- and stereoselectivity. A preliminary mechanistic study revealed that E-alkene product was generated via sequential alkyne hydrogenation to give Z-alkene intermediate, followed by a Z to E alkene isomerization process.
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