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Updated: Aug 24, 2026

Preparation of Stable Bicyclic Aziridinium Ions and Their Ring-Opening for the Synthesis of Azaheterocycles
Published on: August 22, 2018
Molybdenum(0)-Catalyzed Tandem Cyclization Reactions of Aminoalkynes with Diketones for Multiply Substituted
Palash Mondal1, Poulami Dutta1, Ganesan Mani1
1Department of Chemistry, Indian Institute of Technology Kharagpur, Kharagpur, West Bengal721 302, India.
Abstract:
An efficient new molybdenum(0)-catalyzed tandem cyclization reaction to give structurally diverse azaheterocycles is presented here. The reaction between a terminal 1,4-aminoalkyne and acetylacetone in the presence of 5 mol % of [Mo(CO)4(COD)] as a catalyst in CH3CN was optimized to yield its multiply substituted indoline derivative 3a in an excellent yield. The analogous reaction of a terminal 1,5-aminoalkyne with acetylacetone yielded its multiply substituted tetrahydroquinoline 7 in a moderate yield. Various derivatives of indolines (18) and tetrahydroquinolines (5) were isolated. In both types of reactions, regioselective products (72-95% for indolines) were obtained using unsymmetrical 1,3-diketones and their structures were confirmed by the X-ray diffraction method. Products 3a and 7a were also prepared using water as a solvent. The HRMS (ESI+) spectra provide evidence for the enamine, methyl ketone, and diol in their catalytic reaction mixtures. A plausible mechanism involving the intramolecular hydroamination, a nucleophilic attack of an enamine on a 1,3-diketone leading to a diol formation followed by the elimination of water is proposed based on several control reactions, including reactions with the isolated iminium ion salt.
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