Physical Chemistry Chemical Physics · 2003 · 22 citations · 11 references
EngineeringChemical CompositionChemistryInorganic MaterialInorganic CompoundMetal Oxide SurfacesMaterials ScienceInorganic ChemistryAir VanadiumCatalytic MaterialVanadium Surface SpeciesCatalysisInorganic SynthesisElectrochemistryHeterogeneous Vanadium CatalystsSurface ChemistryModel SystemsHeterogeneous CatalysisSingle-atom CatalystCatalyst PreparationSurface Reactivity
Well defined vanadium(IV) surface complexes were prepared via reaction of tetrakis(dimethylamido)vanadium(IV), V[N(CH3)2]4, with protons of surface hydroxyl groups of three different, mainly non-porous oxides SiO2, Al2O3, and TiO2. The grafting reaction was performed either from pentane solution or from the gaseous phase under inert conditions. The density and number of hydroxyl groups were adjusted by thermal pre-treatment of the oxides in vacuo. Chemical analysis (V, N) provided information about the chemical composition of the vanadium surface species after grafting onto the oxides. The coordination sphere and redox properties of the mononuclear paramagnetic vanadium(IV) surface complexes were examined by electron paramagnetic resonance (EPR). After exposure to air vanadium(V) species could be identified by 51V-solid-state-NMR. Ligand exchange reactions were investigated by in-situ infrared spectroscopy after the immobilization reaction.
11
Homogeneous and Heterogeneous Catalysis: Bridging the Gap through Surface Organometallic Chemistry
Christophe Copéret, Mathieu Chabanas, Romain Petroff Saint‐Arroman et al. · Angewandte Chemie International Edition · 2003 · 1K citations
Inorganic Chemistry, Chemical Engineering, Molecular Organometallic Chemistry +10
Matthias Schraml-Marth, Alexander Wokaun, M. Pohl et al. · Journal of the Chemical Society Faraday Transactions · 1991 · 183 citations