Copper-catalyzed decarboxylative cross-coupling of alkynyl carboxylic acids with aryl halides†
Abstract
The
* Corresponding authors
a
Key Laboratory of Green Chemistry and Technology of Ministry of Education, College of Chemistry, and State Key Laboratory of Biotherapy, West China Medical School, Sichuan University, 29 Wangjiang Road, Chengdu 610064, P.R. China
E-mail:
jsyou@scu.edu.cn
Fax: (+86) 28-85412203
The
The article was received on 10 Sep 2010, accepted on 11 Oct 2010 and first published on 04 Nov 2010
If you are not the author of this article and you wish to reproduce material from it in a third party non-RSC publication you must formally request permission using Copyright Clearance Center. Go to our Instructions for using Copyright Clearance Center page for details.
Authors contributing to RSC publications (journal articles, books or book chapters) do not need to formally request permission to reproduce material contained in this article provided that the correct acknowledgement is given with the reproduced material.
Reproduced material should be attributed as follows:
If the material has been adapted instead of reproduced from the original RSC publication "Reproduced from" can be substituted with "Adapted from".
In all cases the Ref. XX is the XXth reference in the list of references.
If you are the author of this article you do not need to formally request permission to reproduce figures, diagrams etc. contained in this article in third party publications or in a thesis or dissertation provided that the correct acknowledgement is given with the reproduced material.
Reproduced material should be attributed as follows:
If you are the author of this article you still need to obtain permission to reproduce the whole article in a third party publication with the exception of reproduction of the whole article in a thesis or dissertation.
Information about reproducing material from RSC articles with different licences is available on our Permission Requests page.
Fetching data from CrossRef.
This may take some time to load.