Issue 94, 2014

Practical synthesis of pyrazoles via a copper-catalyzed relay oxidation strategy

Abstract

Various 1,3- and 1,3,4-substituted pyrazoles are smoothly formed via copper-catalyzed cascade reactions of oxime acetates, amines and aldehydes. This relay oxidative process involves copper-promoted N–O bond cleavage and C–C/C–N/N–N bond formations to furnish pyrazolines, and sequential Cu–O2 system-involved oxidative dehydrogenation of pyrazolines to afford pyrazoles. This transformation provides a novel and versatile approach for the synthesis of pyrazoles, with an inexpensive copper catalyst and green oxidants. It is atom- and step-economical, and possesses a good functional group tolerance, as well as operational simplicity.

Graphical abstract: Practical synthesis of pyrazoles via a copper-catalyzed relay oxidation strategy

Supplementary files

Article information

Article type
Communication
Submitted
27 Aug 2014
Accepted
03 Oct 2014
First published
03 Oct 2014

Chem. Commun., 2014,50, 14793-14796

Author version available

Practical synthesis of pyrazoles via a copper-catalyzed relay oxidation strategy

X. Tang, L. Huang, J. Yang, Y. Xu, W. Wu and H. Jiang, Chem. Commun., 2014, 50, 14793 DOI: 10.1039/C4CC06747A

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