Calcium-Catalyzed Intramolecular Hydroamination-Deacylation Reaction of in situ formed β-Amino Allenes
Calcium-Catalyzed Intramolecular Hydroamination-Deacylation Reaction of in situ formed β-Amino Allenes
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Date
2021-12-21
Authors
Yaragorla, Srinivasarao
Latha, Dandugula Sneha
Rajesh, Pallava
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Abstract
We have developed a simple, One-Pot, three-component reaction of tert-propargyl alcohols, primary amines and acyl ketones to synthesize fully substituted pyrroles and pyridine derivatives in good to excellent yields with large substrate diversity. An eco-friendly calcium catalyst catalyzes the reaction to form the key intermediate β-amino allene that undergoes subsequent Thorpe-Ingold effect assisted hydroamination and aromaticity driven deacylation reaction to yield fully substituted five and six-membered azacyclic compounds. (Figure presented.).
Description
Keywords
Allenes,
Calcium-catalysis,
Hydroamination,
Propargyl alcohols.,
Pyrroles
Citation
Advanced Synthesis and Catalysis. v.363(24)