2025-02-05
Converting carbon dioxide (CO2) into valuable heterocycles is of great synthetic value but is usually limited to five- and six-membered ring compounds. Here, we report a catalytic approach for transforming this carbon renewable into seven-membered heterocycles using a double-stage approach, combining a silver-catalyzed alkyne/CO2 coupling and a subsequent base-catalyzed ring-expansion. This methodology avoids the formation of thermodynamically more stable, smaller-ring by-products and has good functional group tolerance. The synthetic application of these larger-ring cyclic carbonates is further demonstrated by showing their unique ability to serve as synthons for the preparation of bicyclic oxazolidinone pharmacores through an intramolecular domino sequence that involves a transient ketimine group, and various other intermolecular transformations. The results described herein significantly expand on the use of CO2 as a cheap and versatile carbon feedstock generating elusive heterocycles and pharmaceutically relevant
Artículo
Versión publicada
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11 p.
Springer Nature
ICIQ-CERCA Program/Generalitat de Catalunya
ICREA
MICINN (PID2020-112684GB-100 and PID2023-149295NB-I00 to AWK, and CEX2019-000925-S)
AGAUR (2021-SGR-00853; to A.W.K)
Chinese Research Council for a predoctoral fellowship (2021-06350046; to W.S.)
Papers [1286]