| Literature DB >> 24778744 |
Lukasz Górecki1, Artur Mucha1, Paweł Kafarski1.
Abstract
The Abramov reaction, a base-catalyzed nucleophilic addition of dialkyl H-phosphonates (phosphites) to carbonyl compounds, was performed with oxidized quinine derivatives as the substrates. Homologous aldehydes obtained from the vinyl group reacted in a typical way which led to α-hydroxyphosphonates, first reported compounds containing a direct P-C bond between the quinine carbon skeleton and a phosphorus atom. For the C9 ketones a phosphonate-phosphate rearrangement, associated with a tandem elimination of the piperidine fragment, was evidenced.Entities:
Keywords: carbonyl derivatives; dialkyl phosphite addition; organophosporus; phosphonate–phosphate rearrangement; quinine oxidation
Year: 2014 PMID: 24778744 PMCID: PMC3999748 DOI: 10.3762/bjoc.10.85
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Quinine (1) and O-9-t-butylcarbamoylquinine (2) as the substrates for oxidation of the C9 hydroxy and the vinyl group, respectively.
Scheme 2Oxidation of the vinyl group of 9-O-tert-butylcarbamoylquinine to homologous aldehydes.
Scheme 3Addition of diethyl phosphite to aldehydes obtained in oxidation of the vinyl group.
Scheme 4Oxidation of quinine to quininone and quinidinone and addition of phosphites to the ketones yielding the rearrangement products.
Scheme 5Spectroscopic features that confirmed the structure of the phosphate ester product of rearrangement and intramolecular elimination.
Scheme 6Tentative mechanism of the phosphonate–phosphate rearrangement associated with tandem quinuclidine degradation.