Publication | Closed Access
Cobalt‐Catalysed Asymmetric Addition and Alkylation of Secondary Phosphine Oxides for the Synthesis of <i>P</i>‐Stereogenic Compounds
104
Citations
91
References
2021
Year
Inorganic ChemistryChemical EngineeringCatalytic Asymmetric SynthesisAsymmetric AdditionEngineeringSecondary Phosphine OxidesOrganic ChemistryOrganometallic CatalysisCatalysisStereoselective SynthesisChemistryP-chiral Phosphorus CompoundsAsymmetric CatalysisEnantioselective SynthesisBiomolecular Engineering
The catalytic asymmetric synthesis of P-chiral phosphorus compounds is an important way to construct P-chiral ligands. Herein, we report a new strategy that adopts the pyridinyl moiety as the coordinating group in the cobalt-catalysed asymmetric nucleophilic addition/alkylation of secondary phosphine oxides. A series of tertiary phosphine oxides were generated with up to 99 % yield and 99.5 % ee, and with broad functional-group tolerance. Mechanistic studies reveal that (R)-secondary phosphine oxides preferentially interact with the cobalt catalysts to produce P-stereogenic compounds.
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