Issue 13, 2015

Ligand- and Brønsted acid/base-switchable reaction pathways in gold(i)-catalyzed cycloisomerizations of allenoic acids

Abstract

Gold-promoted cyclizations of 2,2-diaryl substituted γ-allenoic acids were found to give three isomeric lactone products, each of which could be obtained selectively by exploiting Brønsted acid/base and ligand effects. Simple 5-exo-trig cyclization products were favored by strong donor ligands or base additives, whereas weak donor ligands and a Brønsted acid additive gave isomeric enelactones resulting from double bond migration. Further optimization afforded a class of medicinally relevant bridged tricyclic lactones via a tandem hydroacyloxylation/hydroarylation process. Kinetic studies and control experiments indicated that the initial 5-exo-trig cyclization product serves as a branch point for further isomerization to the other lactone products via cooperative gold(I)/Brønsted acid catalysis.

Graphical abstract: Ligand- and Brønsted acid/base-switchable reaction pathways in gold(i)-catalyzed cycloisomerizations of allenoic acids

Supplementary files

Article information

Article type
Paper
Submitted
20 Dec 2014
Accepted
13 Feb 2015
First published
17 Feb 2015

Org. Biomol. Chem., 2015,13, 3936-3949

Author version available

Ligand- and Brønsted acid/base-switchable reaction pathways in gold(I)-catalyzed cycloisomerizations of allenoic acids

S. Handa, S. S. Subramanium, A. A. Ruch, J. M. Tanski and L. M. Slaughter, Org. Biomol. Chem., 2015, 13, 3936 DOI: 10.1039/C4OB02640C

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