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Copper(I)‐Catalyzed Asymmetric Desymmetrization through Inverse‐Electron‐Demand aza‐Diels–Alder Reaction: Efficient Access to Tetrahydropyridazines Bearing a Unique α‐Chiral Silane Moiety
34
Citations
61
References
2017
Year
Asymmetric DesymmetrizationUnprecedented CopperEngineeringOrganic ChemistryChemistryHeterocycle ChemistryInverse‐electron‐demand Aza‐diels–alder ReactionChemical EngineeringOrganometallic CatalysisStereoselective SynthesisCross-coupling ReactionDiversity-oriented SynthesisCatalysisEfficient AccessNew ProtocolAsymmetric CatalysisEnantioselective SynthesisBiomolecular EngineeringNatural Sciences
An unprecedented copper(I)-catalyzed asymmetric desymmetrization of 5-silylcyclopentadienes with in situ formed azoalkene was realized through an inverse-electron-demand aza-Diels-Alder reaction (IEDDA) pathway, in which 5-silylcyclopentadienes served as efficient enophiles. This new protocol provides a facile access to the biologically important heterocyclic tetrahydropyridazines containing a unique α-chiral silane motif and three adjoining stereogenic centers in generally good yield (up to 92 %) with exclusive regioselectivity, high diastereoselectivity (>20:1 diastereomeric ratio), and excellent enantioselectivity (up to 98 % enantiomeric excess). DFT calculations and control experiments further confirmed the proposed reaction mechanism.
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