Publication | Closed Access
NiH-Catalyzed Hydroamination/Cyclization Cascade: Rapid Access to Quinolines
72
Citations
44
References
2021
Year
Medicinal ChemistryEngineeringAlkene MetathesisBiochemistryNatural SciencesAvailable AlkynesTriplex Dna IntercalatorOrganic ChemistryCatalysisCascade Hydroamination/cyclization ReactionChemistryHeterocycle ChemistryNih-catalyzed Hydroamination/cyclization CascadePharmacologyAsymmetric CatalysisMolecular CatalysisEnantioselective SynthesisCatalytic Synthesis
Despite the significant success of metal-H-catalyzed hydroamination methodologies, considerable limitations still exist in the selective hydroamination of alkynes, especially for terminal alkynes. Herein, we develop a highly efficient NiH catalytic system that activates readily available alkynes for a cascade hydroamination/cyclization reaction with anthranils. This mild, operationally simple protocol is amenable to a wide array of alkynes including terminal and internal, aryl and alkyl, electron-deficient and electron-rich ones, delivering structurally diverse quinolines in useful to excellent yields (>80 examples, up to 93% yield). The utility of this procedure is exhibited in the late-stage functionalization of several natural products and in the concise synthesis of an antitumor molecule graveolinine and a triplex DNA intercalator. Preliminary mechanistic experiments suggest an alkenylnickel-mediated alkyne hydroamination and an intramolecular cyclization/aromatization of putative enamine intermediates.
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