Publication | Closed Access
Access to Allene‐Containing Molecules via Enantioselective Reactions of Azolium Cumulenolate Intermediates
32
Citations
109
References
2021
Year
Azolium CumulenolateEnantioselective ReactionsEnantioselective SynthesisEngineeringAzolium Cumulenolate IntermediatesNatural SciencesDiversity-oriented SynthesisAzolium CumulenolatesOrganic ChemistryCatalysisSpirooxindole ScaffoldsChemistryHeterocycle ChemistryNatural Product SynthesisAsymmetric CatalysisAllene‐containing MoleculesBiomolecular Engineering
Azolium cumulenolates are a special type of intermediates in N-heterocyclic carbene catalysis. They contain elongated linear structures with three contiguous C=C bonds and sterically unhindered α-carbon atoms. These structural features make it difficult to develop enantioselective reactions for these intermediates. Here we disclose the first carbene-catalyzed highly enantioselective addition reactions of azolium cumulenolates. The reaction starts with alkynals as the precursors for azolium cumulenolate intermediates that undergo enantioselective addition to activated ketones. From the same set of substrates, both allene and spirooxindole products can be obtained with high yields and excellent enantioselectivities. The allene moieties in our optically enriched products carry rich reactivities and can be transformed to diverse molecules. The spirooxindole scaffolds in our products are important structural motifs in natural products and medicines.
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