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New findings give further information on the mechanism of carbon monoxide selective oxidation over g-alumina supported nanoparticle sized gold catalysts. a) CO2 formation, increasing with rising t...
The development of a method for making an adherent coating of Au/TiO2 on a cordierite monolith is described. The optimum method entails first forming a wash-coat of TiO2 by combining a colloidal d...
A compact, internally heated, catalytic reactor is demonstrated for the low-temperature oxidation of carbon monoxide. Carbon nanofibres were grown on carbon felt and used as a support material for ...
Gold catalysts were prepared on TiO2 supports of different phase structures (i.e., anatase, rutile and biphasic), TiO2 crystal size (i.e., 9-23 nm), surface and textural properties (i.e., hydration...
The catalytic activity of oxide-supported gold nanoparticles depends crucially on their size. The present work describes a dedicated set-up in which particle size is determined by grazing incidence...
Catalysts for low temperature CO oxidation were prepared by decorating hydroxyapatite (HAp) ceramic foam scaffolds with highly dispersed gold nanocrystals using a deposition-precipitation (DP) pro...
The interfacial interaction of gold nanoparticles deposited on either model SiO2/Si(100) or high surface area amorphous or mesoporous silica with minute amounts of promoter oxide like “active” FeO...

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