Issue 22, 2017

Cyclic ureas (DMI, DMPU) as efficient, sustainable ligands in iron-catalyzed C(sp2)–C(sp3) coupling of aryl chlorides and tosylates

Abstract

Iron-catalyzed cross-coupling has emerged as a powerful tool for sustainable catalysis. However, by far the most common ligand in iron-catalyzed cross-couplings for preparative and industrial applications is reprotoxic NMP. Herein, we report that cyclic ureas (DMI, DMPU) are efficient and sustainable alternatives to NMP in iron-catalyzed alkylations of aryl chlorides and tosylates with alkyl Grignard reagents. This environmentally benign method accomplishes traditionally challenging C(sp2)–C(sp3) cross-coupling with organometallics possessing β-hydrogens with efficiency matching or superseding NMP. The reaction is compatible with a variety of electrophilic functional handles. Applications to double and site-specific alkylations are described. The potential of this method is highlighted in the key coupling in the synthesis of a dual NK1/serotonin receptor antagonist. Considering the pivotal importance of sustainable iron-catalysis, we believe that the method will find wide application in green chemistry.

Graphical abstract: Cyclic ureas (DMI, DMPU) as efficient, sustainable ligands in iron-catalyzed C(sp2)–C(sp3) coupling of aryl chlorides and tosylates

Supplementary files

Article information

Article type
Communication
Submitted
04 Sep 2017
Accepted
17 Oct 2017
First published
18 Oct 2017

Green Chem., 2017,19, 5361-5366

Cyclic ureas (DMI, DMPU) as efficient, sustainable ligands in iron-catalyzed C(sp2)–C(sp3) coupling of aryl chlorides and tosylates

E. Bisz and M. Szostak, Green Chem., 2017, 19, 5361 DOI: 10.1039/C7GC02690K

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