| Literature DB >> 29484790 |
Jake A Muldoon1, Balázs R Varga1, Meaghan M Deegan1, Timothy W Chapp1, Ádám M Eördögh1, Russell P Hughes1, David S Glueck1, Curtis E Moore2, Arnold L Rheingold2.
Abstract
Nucleophilic substitution results in inversion of configuration at the electrophilic carbon center (SN 2) or racemization (SN 1). The stereochemistry of the nucleophile is rarely considered, but phosphines, which have a high barrier to pyramidal inversion, attack electrophiles with retention of configuration at P. Surprisingly, cyclization of bifunctional secondary phosphine alkyl tosylates proceeded under mild conditions with inversion of configuration at the nucleophile to yield P-stereogenic syn-phosphiranes. DFT studies suggested that the novel stereochemistry results from acid-promoted tosylate dissociation to yield an intermediate phosphenium-bridged cation, which undergoes syn-selective cyclization.Entities:
Keywords: P-stereogenic centers; nucleophilic substitution; phosphiranes; reaction mechanisms; stereochemistry
Year: 2018 PMID: 29484790 DOI: 10.1002/anie.201801427
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336