| Literature DB >> 30997949 |
Daniel Bafaluy1, José María Muñoz-Molina2, Ignacio Funes-Ardoiz1, Sebastian Herold1, Adiran J de Aguirre1, Hongwei Zhang1, Feliu Maseras1,3, Tomás R Belderrain2, Pedro J Pérez2, Kilian Muñiz1,4.
Abstract
The dual function of the N-F bond as an effective oxidant and subsequent nitrogen source in intramolecular aliphatic C-H functionalization reactions is explored. Copper catalysis is demonstrated to exercise full regio- and chemoselectivity control, which opens new synthetic avenues to nitrogenated heterocycles with predictable ring sizes. For the first time, a uniform catalysis manifold has been identified for the construction of both pyrrolidine and piperidine cores. The individual steps of this new copper oxidation catalysis were elucidated by control experiments and computational studies, clarifying the singularity of the N-F function and characterizing the catalytic cycle to be based on a copper(I/II) manifold.Entities:
Keywords: C−H bond activation; C−N bond formation; DFT calculations; amination; copper catalysis
Year: 2019 PMID: 30997949 DOI: 10.1002/anie.201902716
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336