Issue 13, 2015

Catalytic synthesis of amides via aldoximes rearrangement

Abstract

Amide bond formation reactions are among the most important transformations in organic chemistry because of the widespread occurrence of amides in pharmaceuticals, natural products and biologically active compounds. The Beckmann rearrangement is a well-known method to generate secondary amides from ketoximes. However, under the acidic conditions commonly employed, aldoximes RHC[double bond, length as m-dash]NOH rarely rearrange into the corresponding primary amides RC([double bond, length as m-dash]O)NH2. In recent years, it was demonstrated that this atom-economical transformation can be carried out efficiently and selectively with the help of metal catalysts. Several homogeneous and heterogenous systems have been described. In addition, protocols offering the option to generate the aldoximes in situ from the corresponding aldehydes and hydroxylamine, or even from alcohols, have also been developed, as well as a series of tandem processes allowing the access to N-substituted amide products. In this Feature article a comprehensive overview of the advances achieved in this particular research area is presented.

Graphical abstract: Catalytic synthesis of amides via aldoximes rearrangement

Article information

Article type
Feature Article
Submitted
01 Nov 2014
Accepted
05 Dec 2014
First published
05 Dec 2014

Chem. Commun., 2015,51, 2495-2505

Catalytic synthesis of amides via aldoximes rearrangement

P. Crochet and V. Cadierno, Chem. Commun., 2015, 51, 2495 DOI: 10.1039/C4CC08684H

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