DOI: 10.1021/acs.orglett.6c03702 ISSN: 1523-7060

Divergent Synthesis of Heterocycles through Cascade Rearrangements of Dienyne-Amides and Dialkyl Bromomalonates

Mengwei You, Yongli Li, Sisi Huang, Jiahong Wu, Lei Shen, Hui Mao, Liejin Zhou, Tianli Wang

Abstract

Divergent synthesis provides efficient access to structurally diverse molecules from common precursors. Herein, we report a catalyst- and temperature-controlled cascade rearrangement of dienyne-amides with dialkyl bromomalonates, enabling selective access to three distinct N,O-heterocyclic scaffolds. Gold catalysis at room temperature promotes the cycloisomerization/cyclopropanation/1-aza-Cope rearrangement cascade to furnish furan-fused dihydroazepines, whereas heating triggers a formal [1,3]-rearrangement to afford spirocyclic heterocycles with high diastereoselectivity. Alternatively, silver catalysis redirects the reaction through oxotriene formation and vinyl cyclopropane rearrangement, providing a distinct class of spirocycles. This protocol features a broad substrate scope, high selectivity, and scalability, highlighting the utility of controlled skeletal rearrangements for divergent heterocycle synthesis.