Acid-catalyzed oxidative cleavage of S–S and Se–Se bonds with DEAD: efficient access to sulfides and selenides
Author:
Affiliation:
1. Institute of Organic Chemistry & MOE Key Laboratory of Bioinorganic and Synthetic Chemistry
2. School of Chemistry
3. Sun Yat-Sen University
4. Guangzhou 510275
5. P. R. China
6. School of Materials Science and Engineering
Abstract
An acid/DEAD system for oxidative cleavage of S–S and Se–Se bonds to generate chalcogenium ions has been developed. These ions could be captured by nucleophile-tethered alkenes and nucleophilic aryl reagents such as arylboronic acids and arenes to give chalcogenides.
Funder
Sun Yat-sen University
National Natural Science Foundation of China
Natural Science Foundation of Guangdong Province
Publisher
Royal Society of Chemistry (RSC)
Subject
Organic Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2018/QO/C8QO00909K
Reference74 articles.
1. Functional group manipulation using organoselenium reagents
2. New organoselenium methodology
3. P. Metzner and A.Thuillier , Organosulfur Compounds as Intermediates in Organic Synthesis , in Sulfur Reagents in Organic Synthesis , ed. A. R. O. Meth-Cohn and C. W. Rees , Academic Press , San Diego , 1994 , pp. 75–178
4. Nickel-catalyzed reductive thiolation and selenylation of unactivated alkyl bromides
5. Organocatalytic Carbon–Sulfur Bond-Forming Reactions
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