Access to unsaturated bicyclic lactones by overriding conventional C(sp3)–H site selectivity

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Access to unsaturated bicyclic lactones by overriding conventional C(sp3)–H site selectivity
Title:
Access to unsaturated bicyclic lactones by overriding conventional C(sp3)–H site selectivity
Journal Title:
Nature Chemistry
Keywords:
Publication Date:
10 August 2023
Citation:
Das, J., Ali, W., Ghosh, A., Pal, T., Mandal, A., Teja, C., Dutta, S., Pothikumar, R., Ge, H., Zhang, X., & Maiti, D. (2023). Access to unsaturated bicyclic lactones by overriding conventional C(sp3)–H site selectivity. Nature Chemistry, 15(11), 1626–1635. https://doi.org/10.1038/s41557-023-01295-x
Abstract:
AbstractTransition metal catalysis plays a pivotal role in transforming unreactive C–H bonds. However, regioselective activation of distal aliphatic C–H bonds poses a tremendous challenge, particularly in the absence of directing templates. Activation of a methylene C–H bond in the presence of methyl C–H is underexplored. Here we show activation of a methylene C–H bond in the presence of methyl C–H bonds to form unsaturated bicyclic lactones. The protocol allows the reversal of the general selectivity in aliphatic C–H bond activation. Computational studies suggest that reversible C–H activation is followed by β-hydride elimination to generate the Pd-coordinated cycloalkene that undergoes stereoselective C–O cyclization, and subsequent β-hydride elimination to provide bicyclic unsaturated lactones. The broad generality of this reaction has been highlighted via dehydrogenative lactonization of mid to macro ring containing acids along with the C–H olefination reaction with olefin and allyl alcohol. The method substantially simplifies the synthesis of important bicyclic lactones that are important features of natural products as well as pharmacoactive molecules.
License type:
Attribution 4.0 International (CC BY 4.0)
Funding Info:
This research / project is supported by the A*STAR - Career Development Fund
Grant Reference no. : C210812008

This research / project is supported by the A*STAR - MTC Young Individual Research Grants (YIRG)
Grant Reference no. : M22K3c0091
Description:
ISSN:
1755-4349
1755-4330
1755-4349