This dissertation is focused on understanding the structure-activity relationship in heterogeneous catalysis by studying model catalytic systems. The catalytic oxidation of CO was chosen as a model reaction for studies on a variety of catalysts. A series of Au/TiO2 catalysts were prepared from various metalorganic gold complexes. The catalytic activity and the particle size of the gold catalysts were strongly dependent on the gold complexes. The Au/TiO2 catalyst prepared from a tetranuclear gold complex showed the best performance for CO oxidation, and the average gold particle size of this catalyst was 3.1 nm. CO oxidation was also studied over Au/MgO catalysts, where the MgO supports were annealed to various temperatures between 900 and 1...
Iron oxide supported gold catalysts were tested for the room temperature oxidation of carbon monoxid...
Introduction Interest in supported gold catalysts has exploded since the discovery that gold nanopar...
The activity of Pt and Au nanoparticles catalysts over titania support for carbon monoxide oxidation...
This dissertation is focused on understanding the structure-activity relationship in heterogeneous c...
Monometallic and bimetallic model catalysts on either refractory metal singlecrystals as planar surf...
textThe chemical nature of gold has been determined to be much richer than previously thought. Recen...
Bulk Au is inert. However, when dispersed as small particles on an oxide support its chemistry chang...
An atomic level understanding of the structure and stability of model catalysts is essential for su...
textCatalysts are essential for technological advances, because of their indispensable role in chemi...
Au based catalysts have been extensively studied since Masatake Haruta in Japan discovered that smal...
We have investigated the morphology and electronic structure of two basic classes of systems: metal ...
Thiol monolayer-protected Au clusters (MPCs) were prepared using dendrimer templates, deposited onto...
Heterogeneous Catalysis plays an extremely important role in the world. Metal particles supported on...
Oxide thin films and bimetallic model catalysts have been studied using metastable impact electron s...
We address the question of the nature of Au NP activation and through a combination of experimental ...
Iron oxide supported gold catalysts were tested for the room temperature oxidation of carbon monoxid...
Introduction Interest in supported gold catalysts has exploded since the discovery that gold nanopar...
The activity of Pt and Au nanoparticles catalysts over titania support for carbon monoxide oxidation...
This dissertation is focused on understanding the structure-activity relationship in heterogeneous c...
Monometallic and bimetallic model catalysts on either refractory metal singlecrystals as planar surf...
textThe chemical nature of gold has been determined to be much richer than previously thought. Recen...
Bulk Au is inert. However, when dispersed as small particles on an oxide support its chemistry chang...
An atomic level understanding of the structure and stability of model catalysts is essential for su...
textCatalysts are essential for technological advances, because of their indispensable role in chemi...
Au based catalysts have been extensively studied since Masatake Haruta in Japan discovered that smal...
We have investigated the morphology and electronic structure of two basic classes of systems: metal ...
Thiol monolayer-protected Au clusters (MPCs) were prepared using dendrimer templates, deposited onto...
Heterogeneous Catalysis plays an extremely important role in the world. Metal particles supported on...
Oxide thin films and bimetallic model catalysts have been studied using metastable impact electron s...
We address the question of the nature of Au NP activation and through a combination of experimental ...
Iron oxide supported gold catalysts were tested for the room temperature oxidation of carbon monoxid...
Introduction Interest in supported gold catalysts has exploded since the discovery that gold nanopar...
The activity of Pt and Au nanoparticles catalysts over titania support for carbon monoxide oxidation...