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    Cavallo, Luigi (1)
    Falivene, Laura (1)Martínez, Juan Pablo (1)Nolan, Steven P. (1)Poater, Albert (1)View MoreDepartmentChemical Science Program (1)
    KAUST Catalysis Center (KCC) (1)
    Physical Sciences and Engineering (PSE) Division (1)Journal
    Chemistry - A European Journal (1)
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    Wiley (1)
    SubjectDensity functional calculations (1)Fullerene (1)Metallacycles (1)Metathesis (1)
    Ruthenium (1)
    View MoreTypeArticle (1)Year (Issue Date)
    2016 (1)
    Item AvailabilityMetadata Only (1)

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    In Silico Olefin Metathesis with Ru-Based Catalysts Containing N-Heterocyclic Carbenes Bearing C60Fullerenes

    Martínez, Juan Pablo; Vummaleti, Sai V. C.; Falivene, Laura; Nolan, Steven P.; Cavallo, Luigi; Solà, Miquel; Poater, Albert (Chemistry - A European Journal, Wiley, 2016-04-05) [Article]
    Density functional theory calculations have been used to explore the potential of Ru-based complexes with 1,3-bis(2,4,6-trimethylphenyl)imidazolin-2-ylidene (SIMes) ligand backbone (A) being modified in silico by the insertion of a C60 molecule (B and C), as olefin metathesis catalysts. To this end, we investigated the olefin metathesis reaction catalyzed by complexes A, B, and C using ethylene as the substrate, focusing mainly on the thermodynamic stability of all possible reaction intermediates. Our results suggest that complex B bearing an electron-withdrawing N-heterocyclic carbene improves the performance of unannulated complex A. The efficiency of complex B is only surpassed by complex A when the backbone of the N-heterocyclic carbene of complex A is substituted by two amino groups. The particular performance of complexes B and C has to be attributed to electronic factors, that is, the electronic-donating capacity of modified SIMes ligand rather than steric effects, because the latter are predicted to be almost identical for complexes B and C when compared to those of A. Overall, this study indicates that such Ru-based complexes B and C might have the potential to be effective olefin metathesis catalysts. © 2016 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
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