| Literature DB >> 28695616 |
Giuseppe Dilauro1, Marzia Dell'Aera1, Paola Vitale1, Vito Capriati1, Filippo Maria Perna1.
Abstract
In contrast to classic methods carried out under inert atmospheres with dry volatile organic solvents and often low temperatures, the addition of highly polar organometallic compounds to non-activated imines and nitriles proceeds quickly, efficiently, and chemoselectively with a broad range of substrates at room temperature and under air with water as the only reaction medium. Secondary amines and tertiary carbinamines are furnished in yields of up to and over 99 %. The significant solvent D/H isotope effect observed for the on-water nucleophilic additions of organolithium compounds to imines suggests that the on-water catalysis arises from proton transfer across the organic-water interface. The strong intermolecular hydrogen bonds between water molecules may play a key role in disfavoring protonolysis, which occurs extensively in other protic media such as methanol. This work lays the foundation for reshaping many fundamental s-block metal-mediated organic transformations in water.Entities:
Keywords: Grignard reagents; azo compounds; nucleophilic addition; organolithium compounds; water chemistry
Year: 2017 PMID: 28695616 DOI: 10.1002/anie.201705412
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336