| Literature DB >> 27558185 |
Vittorio Pace1, Wolfgang Holzer1, Guangrong Meng2, Shicheng Shi2, Roger Lalancette2, Roman Szostak3, Michal Szostak4.
Abstract
Herein, we show that acyclic amides that have recently enabled a series of elusive transition-metal-catalyzed N-C activation/cross-coupling reactions are highly twisted around the N-C(O) axis by a new destabilization mechanism of the amide bond. A unique effect of the N-glutarimide substituent, leading to uniformly high twist (ca. 90°) irrespective of the steric effect at the carbon side of the amide bond has been found. This represents the first example of a twisted amide that does not bear significant steric hindrance at the α-carbon atom. The (15) N NMR data show linear correlations between electron density at nitrogen and amide bond twist. This study strongly supports the concept of amide bond ground-state twist as a blueprint for activation of amides toward N-C bond cleavage. The new mechanism offers considerable opportunities for organic synthesis and biological processes involving non-planar amide bonds.Entities:
Keywords: N−C activation; amides; rotation; steric hindrance; twisted amides
Year: 2016 PMID: 27558185 DOI: 10.1002/chem.201603543
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236