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    AuthorAljuhani, Maha A. (1)Barman, Samir (1)
    Basset, Jean-Marie (1)
    Cavallo, Luigi (1)
    de Mallmann, Aimery (1)View MoreDepartment
    Chemical Science Program (1)
    KAUST Catalysis Center (KCC) (1)
    Physical Sciences and Engineering (PSE) Division (1)
    JournalACS Catalysis (1)KAUST Grant Number2174 CGR3 (1)Publisher
    American Chemical Society (ACS) (1)
    Subject
    acetaldehyde (1)
    DFT calculations (1)
    metathetic oxidation (1)molybdenum catalyst (1)silica-supported catalyst (1)View MoreTypeArticle (1)Year (Issue Date)2018 (1)Item Availability
    Metadata Only (1)

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    Metathetic oxidation of 2-butenes to acetaldehyde by molecular oxygen using the single-site olefin metathesis catalyst (≡SiO)2Mo(=O)2

    Le Quéméner, Frédéric; Basset, Jean-Marie; Barman, Samir; Merle, Nicolas; Aljuhani, Maha A.; Samantaray, Manoja; Saih, Youssef; Szeto, Kai C.; de Mallmann, Aimery; Minenkov, Yury; Huang, Kuo-Wei; Cavallo, Luigi; Taoufik, Mostafa (ACS Catalysis, American Chemical Society (ACS), 2018-07-10) [Article]
    The catalytic oxidation of cis-2-butene and propylene with molecular oxygen in the presence of a well-defined surface coordination compound, (≡SiO)2Mo(═O)2, affords acetaldehyde. Using a cis-2-butene/O2 feed at 350–400 °C, the reaction yields a conversion of approximately 10% and an acetaldehyde selectivity of approximately 70%. This performance is maintained up to an experimental time of 20 h in a continuous flow reactor. The Mo(bis-oxo) surface compound was fully characterized by multiple spectroscopic techniques as well as surface microanalysis. The results from quantum mechanics calculations indicate that the reaction proceeds via [2 + 2] cycloaddition/cycloelimination steps with the formation of metalla-oxacyclobutane intermediates, analogous to the Chauvin mechanism in olefin metathesis.
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