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Development of realistic models for Double Metal Cyanide catalyst active sites
Authors:Jacek C Wojdeł  Stefan T Bromley  Francesc Illas  Jacobus C Jansen
Institution:(1) Department de Química Física & Centre Especial de Recerca en Química Teòrica, Universitat de Barcelona & Parc Científic de Barcelona, C/Martí i Franquès 1, 08028 Barcelona, Spain;(2) Ceramic Membrane Centre “The Pore”, DelftChemTech, Delft University of Technology, Julianalaan 136, 2628BL Delft, The Netherlands
Abstract:Realistic molecular models of one and two-centre catalytic active sites originating from the cleavage of a precursor material known to give rise to an active double metal cyanide catalyst are described. Via periodic density functional calculations the structure of the proposed catalytic sites are shown to be dependent on electrostatic and structural relaxation processes occurring at the surfaces of the precursor material. It is shown how these effects may be adequately captured by small molecular models of the active sites. The general methodology proposed should provide a computationally efficient basis for detailed future studies into catalytic reactions over double metal cyanide materials. MediaObjects/894_2007_218_Figa_HTML.jpg Figure Reconstructed DMC 100]-surface: electrostatic potential mapped on charge density isosurface This work has been originally presented on the Modelling and Design of Molecular Materials conference in Wrocław, Poland.
Keywords:DFT modelling  Double metal cyanide catalyst  Heterogenous catalysis
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