| Literature DB >> 27175039 |
Ihsan Erden1, John Basada1, Daniela Poli1, Gabriel Cabrera1, Fupei Xu1, Scott Gronert2.
Abstract
The thermal decomposition of fulvene endoperoxides ordinarily proceeds via an allene oxide intermediate affording oxepin-2(3H)-one derivatives. We have now uncovered new, unusual pathways in these decompositions where the presence of a hydroxyl group on the alkyl or aryl attached to the fulvene exocyclic double bond has a profound effect on the fate of the reactive intermediates derived from the unstable endoperoxides. Computational work supports the proposed mechanistic pathways.Entities:
Keywords: allene oxides; cyclopropanones; endoperoxides; fulvenes; oxy-allyl
Year: 2016 PMID: 27175039 PMCID: PMC4860729 DOI: 10.1016/j.tetlet.2016.04.024
Source DB: PubMed Journal: Tetrahedron Lett ISSN: 0040-4039 Impact factor: 2.415