Publication | Open Access
Accessing Both Retention and Inversion Pathways in Stereospecific, Nickel-Catalyzed Miyaura Borylations of Allylic Pivalates
83
Citations
54
References
2016
Year
EngineeringAllylic PivalatesAllylboronate ProductOrganic ChemistryChemistryNickel-catalyzed Miyaura BorylationsChemical EngineeringOrganometallic CatalysisStereoselective SynthesisStereochemical SwitchCross-coupling ReactionBiochemistryDiversity-oriented SynthesisInversion PathwaysCatalysisAsymmetric CatalysisEnantioselective SynthesisBiomolecular EngineeringNatural Sciences
We have developed a stereospecific, nickel-catalyzed Miyaura borylation of allylic pivalates, which delivers highly enantioenriched α-stereogenic γ-aryl allylboronates with good yields and regioselectivities. Our complementary sets of conditions enable access to either enantiomer of allylboronate product from a single enantiomer of readily prepared allylic pivalate substrate. Excellent functional group tolerance, yields, regioselectivities, and stereochemical fidelities are observed. The stereochemical switch from stereoretention to stereoinversion largely depends upon solvent and can be explained by competitive pathways for the oxidative addition step. Our mechanistic investigations support a stereoretentive pathway stemming from a directed oxidative addition and a stereoinvertive pathway that is dominant when MeCN blocks coordination of the directing group by binding the nickel catalyst.
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