Radical-Induced Metal and Solvent-Free Cross-Coupling Using TBAI–TBHP: Oxidative Amidation of Aldehydes and Alcohols with <i>N</i>-Chloramines via C–H Activation
作者:Tapas Kumar Achar、Prasenjit Mal
DOI:10.1021/jo502464n
日期:2015.1.2
A solvent-free cross-coupling method for oxidative amidation of aldehydes and alcohols via a metal-free radial pathway has been demonstrated. The proposed methodology uses the TBAI-TBHP combination which efficiently induces metal-free C–H activation of aldehydes under neat conditions at 50 °C or ball-milling conditions at room temperature.
Dioxygen-Promoted Pd-Catalyzed Aminocarbonylation of Organoboronic Acids with Amines and CO: A Direct Approach to Tertiary Amides
作者:Long Ren、Xinwei Li、Ning Jiao
DOI:10.1021/acs.orglett.6b02913
日期:2016.11.18
A direct approach from organoboronic acids and amines to tertiary amides via Pd-catalyzed aerobic aminocarbonylation has been developed. The presence of O2 significantly promotes the efficiency of this transformation. This method uses commercially available organoboronic acids and cheap CO and O2 (1 atm), which renders amides an easy synthesis with broad substrate scope and high functional group tolerance
作者:Nathalie Dubois、Daniel Glynn、Thomas McInally、Barrie Rhodes、Simon Woodward、Derek J. Irvine、Chris Dodds
DOI:10.1016/j.tet.2013.08.062
日期:2013.11
acids with primary and secondary amines under a variety of conditions (reflux, sealed tube, microwave) has been compared for a significant range of coupling partners of relevance to the preparation of amides of interest in pharmaceutical chemistry. Commercial microwave reactors promote the fastest couplings and allow the use of significantly sterically hinderedamines (primary and secondary) and carboxylic
An approach for the synthesis of carboxylic acid was achieved via oxidative C–C bondcleavage. Oxygen in the air participates in the reaction as an oxidant. It's found that many types of amines can promote this type reaction.
A direct dehydrogenative amidation reaction of aldehydes and amines under a visiblelightmediated ligand-to-metal charge transfer (LMCT) process was described. In this protocol, aldehyde substrates were activated by photoinduced hydrogenatomabstraction (HAA), generating acyl chloride intermediates followed by nucleophilic addition of amines. The synthetic method furnishes good functional group tolerance