Publication | Closed Access
Nickel‐Catalyzed Migratory Hydrocyanation of Internal Alkenes: Unexpected Diastereomeric‐Ligand‐Controlled Regiodivergence
19
Citations
105
References
2020
Year
Chemical EngineeringEngineeringBroad RangeNatural SciencesDiversity-oriented SynthesisCatalyst ArchitectureOrganic ChemistryOrganometallic CatalysisCatalysisInternal AlkenesChemistryAsymmetric CatalysisEnantioselective Synthesis
Abstract A regiodivergent nickel‐catalyzed hydrocyanation of a broad range of internal alkenes involving a chain‐walking process is reported. When appropriate diastereomeric biaryl diphosphite ligands are applied, the same starting materials can be converted to either linear or branched nitriles with good yields and high regioselectivities. DFT calculations suggested that the catalyst architecture determines the regioselectivity by modulating electronic and steric interactions. In addition, moderate enantioselectivities were observed when branched nitriles were produced.
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