Kumar Yadav Anup, Yadav Dhananjay, Kumar Vipin, Ray Subhasish, Singh Maya Shankar
Department of Chemistry, Institute of Science, Banaras Hindu University, Varanasi 221005, India.
Org Biomol Chem. 2024 May 29;22(21):4326-4331. doi: 10.1039/d4ob00438h.
Herein, we report a viable protocol to access furo[3,2-]chromen-4-ones by engaging easily accessible 4-hydroxy coumarins as a three-atom CCO unit and thioamides as a C2 coupling partner, mediated by phenyliodine(III) diacetate (PIDA) at room temperature in a highly efficient and pot-/step-economical manner. This strategy not only avoids potential toxicity and tiresome workup conditions, but also features operational simplicity, a broad substrate scope, good functional group tolerance, high yields, easy scalability and exclusive selectivity. A mechanistic study has shown that this metal-free reaction is triggered by PIDA activation of the β-carbon of 4-hydroxy coumarin, followed by a nucleophilic addition/intramolecular cyclization/dethiohydration cascade. High-resolution mass spectra (HRMS) study confirms the key intermediates involved during the course of the reaction, elucidating the reaction pathways, and demonstrates the excellent regio- and chemoselectivity of this approach.
在此,我们报道了一种可行的方案,通过使用易于获得的4-羟基香豆素作为三原子CCO单元,硫代酰胺作为C2偶联伙伴,在室温下由二乙酸碘苯(III)(PIDA)介导,以高效且原子/步骤经济的方式获得呋喃并[3,2 -]色烯-4-酮。该策略不仅避免了潜在的毒性和繁琐的后处理条件,而且具有操作简单、底物范围广、官能团耐受性好、产率高、易于放大以及选择性专一的特点。机理研究表明,这种无金属反应是由PIDA对4-羟基香豆素的β-碳进行活化引发的,随后是亲核加成/分子内环化/脱硫脱水级联反应。高分辨率质谱(HRMS)研究证实了反应过程中涉及的关键中间体,阐明了反应途径,并证明了该方法具有出色的区域选择性和化学选择性。