Journal of the American Chemical Society · 2015 · 134 citations · 39 references
Asymmetric CatalysisChemical EngineeringCross-coupling ReactionEngineeringAlkene MetathesisNatural SciencesDiversity-oriented SynthesisOrganic ChemistryHydride DonorOrganometallic CatalysisCatalysisAlkyl TriflatesChemistryCopper-catalyzed HydroalkylationCopper Hydride Formation
We have developed a copper-catalyzed hydroalkylation of terminal alkynes using alkyl triflates as coupling partners and (Me(2)HSi)(2)O as a hydride donor. The hydroalkylation proceeds with excellent anti-Markovnikov regioselectivity and provides exclusively (E)-alkenes. We have demonstrated that both alkyl- and aryl-substituted alkynes can be used as substrates, together with 1° alkyl and benzylic triflates. Finally, the transformation can be accomplished in the presence of a wide range of functional groups. Overall, the new hydroalkylation reaction allows highly efficient and diastereospecific synthesis of (E)-alkenes from readily available terminal alkynes and alkyl triflates. On the basis of a preliminary mechanistic study, we propose that the hydroalkylation reaction involves copper hydride formation, hydrocupration of an alkyne, and alkylation of an alkenyl copper intermediate.
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Paul R. Blakemore, W.J. Cole, Philip Kocieński et al. · Synlett · 1998 · 696 citations
Reto Dorta, Edwin D. Stevens, Natalie Scott et al. · Journal of the American Chemical Society · 2005 · 632 citations
Inorganic Compound, Inorganic Chemistry, Chemical Engineering +12