| Literature DB >> 25246981 |
Ivana Sagud1, Simona Božić1, Zeljko Marinić2, Marija Sindler-Kulyk1.
Abstract
Novel cis/trans-4- and cis/trans-5-(2-vinylstyryl)oxazoles have been synthesized by Wittig reactions from the diphosphonium salt of α,α'-o-xylene dibromide, formaldehyde and 4- and 5-oxazolecarbaldehydes, respectively. In contrast, trans-5-(2-vinylstyryl)oxazole has been synthesized by the van Leusen reaction from trans-3-(2-vinylphenyl)acrylaldehyde which is prepared from o-vinylbenzaldehyde and (formylmethylene)triphenylphosphorane. The 4- and 5-(2-vinylstyryl)oxazoles afford, by photochemical intramolecular cycloaddition, diverse fused oxazoline-benzobicyclo[3.2.1]octadienes, which are identified and characterized by spectroscopic methods. The photoproducts formed are relatively unstable and spontaneously or on silica gel undergo oxazoline ring opening followed by formation of formiato- or formamido-benzobicyclo[3.2.1]octenone derivatives. On irradiation of 4-(2-vinylstyryl)oxazole small quantities of electrocyclization product, 4-(1,2-dihydronaphthalen-2-yl)oxazole, are isolated and spectroscopically characterized.Entities:
Keywords: bicyclo[3.2.1]octane; intramolecular photocycloaddition; oxazole; styryl; vinyl
Year: 2014 PMID: 25246981 PMCID: PMC4168845 DOI: 10.3762/bjoc.10.230
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Synthesis of 4- (1) and 5-(2-vinylstyryl)oxazoles (2).
Scheme 2Irradiation of 4- (1) and 5-(2-vinylstyryl)oxazoles (2) (crude reaction mixtures).
Figure 1Part of 1H NMR spectra in C6D6 of the crude photomixtures after 200 min (300 nm, rt ) of irradiation of cis/trans-1 (a) and cis/trans-2 (b).
Scheme 3Plausible mechanisms of oxazoline ring-opening in photoproduct 10.
Figure 21H NMR spectra in C6D6 of rel-(9S)-12a (a) and rel-(9S)-11 (b).
Scheme 4Mechanism of the formation of polycyclic compounds (8–10).
Scheme 5Reactions of the photochemical product 8 with EtOH, MeOD and H2O/silica gel.
Scheme 6Plausible mechanisms of oxazoline ring opening in photoproduct 10 and formation of 12.