Photosensitizer-free Visible-light-induced Gold-catalyzed Tandem Cyclization/Arylation of 2,3-Allenamides with Aryl Diazonium Salts: an Efficient Synthesis of 4-Aryl-2(5H)-furanimines and Furanones Derivatives
Abstract
A novel gold-catalyzed tandem intramolecular arylative cyclization of 2,3-allenamides with readily accessible aryl diazonium salts under visible-light irradiation has been developed. This method enables the efficient synthesis of 4-aryl-2(5H)-furanimines and furanones derivatives under mild conditions, without the need for external photosensitizers and oxidants. Notably, this approach accomplishes, for the first time, the synthesis of 4-aryl-2(5H)-furanimines from 4monosubstituted 2,3-allenamides via an O-attack pathway, overcoming the limitations of conventional methods and bridging a critical gap in accessing 4-aryl-2(5H)-furanimine derivatives from such substrates. Furthermore, product selectivity is exclusively controlled by solvent: using 1,4-dioxane yields furanimines, while moist methanol gives furanones, both in moderate to excellent yields. The reaction demonstrates broad functional group tolerance and a wide substrate scope, providing a highly versatile one-pot strategy for constructing two distinct heterocyclic frameworks from 2,3allenamides. Mechanistic studies provide strong support for the proposed reaction pathway.
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