Fast and Highly Chemoselective Alkynylation of Thiols with Hypervalent Iodine Reagents Enabled through a Low Energy Barrier Concerted Mechanism.
Version
Published
Date Issued
2014
Author(s)
Type
Article
Language
English
Abstract
Among all functional groups, alkynes occupy a privileged position in synthetic and medicinal chemistry, chemical biology, and materials science. Thioalkynes, in particular, are highly useful, as they combine the enhanced reactivity of the triple bond with a sulfur atom frequently encountered in bioactive compounds and materials. Nevertheless, general methods to access these compounds are lacking. In this article, we describe the mechanism and full scope of the alkynylation of thiols using ethynyl benziodoxolone (EBX) hypervalent iodine reagents. Computations led to the discovery of a new, three-atom concerted transition state with a very low energy barrier, which rationalizes the high reaction rate. On the basis of this result, the scope of the reaction was extended to the synthesis of aryl- and alkyl-substituted alkynes containing a broad range of functional groups. New sulfur nucleophiles such as thioglycosides, thioacids, and sodium hydrogen sulfide were also alkynylated successfully to lead to the most general and practical method yet reported for the synthesis of thioalkynes.
Publisher DOI
Journal or Serie
Journal of the American Chemical Society
ISSN
0002-7863
Publisher URL
Organization
Volume
136
Issue
47
Publisher
American Chemical Society (ACS)
Submitter
ServiceAccount
Citation apa
Frei, R., Wodrich, M. D., Hari, D. P., Borin, P.-A., Chauvier, C., & Waser, J. (2014). Fast and Highly Chemoselective Alkynylation of Thiols with Hypervalent Iodine Reagents Enabled through a Low Energy Barrier Concerted Mechanism. In Journal of the American Chemical Society (Vol. 136, Issue 47, pp. 16563–16573). American Chemical Society (ACS). https://doi.org/10.24451/arbor.5689
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Fast and Highly Chemoselective Alkynylation of Thiols with Hypervalent Iodine Reagents Enabled through a Low Energy Barrier Concerted Mechanism..pdf
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