Uppuluru Ajay, Kumar Sumit, Babu Prithvirajan, Kommoju Anilkumar, Padala Kishor, Pratheepkumar Annamalai
Department of Chemistry, School of Advanced Science, Vellore Institute of Technology, Katpadi, Vellore, Tamil Nadu, 632014, India.
Department of Chemistry, Central Tribal University of Andhra Pradesh, Vizianagaram, Andhra Pradesh-535003, India.
Org Biomol Chem. 2025 Jul 16;23(28):6801-6807. doi: 10.1039/d5ob00898k.
A three-component reaction involving 2-aminobenzamide, phenylacetylene, and DMSO in the presence of KSO as an oxidant has been developed to access a wide range of -substituted quinazolinones. In this methodology, DMSO functions both as a solvent and as a source of various synthons, facilitating key C-C and C-X bond formations tandem annulation. This reaction offers several advantages, such as being metal-free and cost-effective, and proceeding under mild conditions that efficiently promote the transformation. This methodology enables the synthesis of various quinazolinone compounds by a tandem one-pot reaction in moderate to good yields. Mechanistic insights supported by deuterium labeling and control experiments, suggest the participation of DMSO-derived intermediates and confirm the proposed reaction mechanism. This environmentally benign protocol offers a direct and scalable method to access bioactive heterocycles of pharmaceutical relevance.