Publication | Closed Access
Electrochemical Oxidation‐Induced Oxyphosphorylation of Alkenes and Alkynes with Water via Hydrogen Atom Transfer
24
Citations
42
References
2022
Year
Chemical EngineeringEngineeringP RadicalsAnode Oxidation ProcessOrganic ElectrochemistryElectrochemical Oxidation‐induced OxyphosphorylationRadical (Chemistry)Molecular ElectrochemistryElectrosynthesisRadical CouplingOrganic ChemistryCatalysisRedox ChemistryHydrogenChemistryHydrogen Atom TransferElectrochemistry
Abstract A metal‐ and exogenous‐oxidant‐free oxidation‐induced oxyphosphorylation of alkenes and alkynes with water for β‐ketophosphonates has been developed through the radical coupling under electrochemical conditions. This protocol is compatible with a wide range of alkenes, alkynes, and diarylphosphorus derivatives, and enables the gram‐scale synthesis of β‐ketophosphonates. The mechanistic study revealed that the P radicals were generated via hydrogen atom transfer (HAT) event jointly mediated by tetrabutylammonium acetate and anode oxidation process. magnified image
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