Publication | Open Access
Photoredox-Catalyzed Ketyl–Olefin Coupling for the Synthesis of Substituted Chromanols
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Citations
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References
2016
Year
Chemical EngineeringProton DonorsDouble RoleEngineeringPhotochemistryAlkene MetathesisPhotoredox ProcessCross-coupling ReactionSynthetic PhotochemistryPhotocatalysisOrganic ChemistryCatalysisChemistrySubstituted ChromanolsFormal Hydroacylation
A visible light photoredox-catalyzed aldehyde olefin cyclization is reported. The method represents a formal hydroacylation of alkenes and alkynes and provides chromanol derivatives in good yields. The protocol takes advantage of the double role played by trialkylamines (NR3) which act as (i) electron donors for reducing the catalyst and (ii) proton donors to activate the substrate via a proton-coupled electron transfer.
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