In this review, we examine the role of oxide support defects, cluster size-dependence, cluster structural fluxionality, and impurity doping on the catalytic properties of size-selected metal clusters on surfaces. By combining experimental results from the oxidation of CO on size-selected gold clusters with ab-initio calculations, a detailed picture emerges of the electronic and structural dynamics of this process. For Au8, Au4, and Au3Sr clusters on F-center defects on MgO(100), optimized atomic structures and local density of states calculations support the experimental results for the oxidation of CO. Fundamental aspects such as charge transfer from oxide defect sites and the adsorption and activation of reactant molecules are elucidated....
Aiming at understanding the elementary steps governing the oxidation of CO catalyzed by dispersed or...
The present density functional theory study addresses the question whether the presence of H2O influ...
The morphology of small metal clusters can have a big impact on their electronic, magnetic, and chem...
Recently there has been a surge in research pertaining to the physical and chemical properties of go...
During the last decades the specific manipulation of matter on the (sub-) nanometer scale, also know...
Chemical reactivity of transition metal clusters toward various molecules in gas phase has been a su...
Density functional simulations have been performed for Au7Cu23 and Au23Cu7 clusters on MgO(100) supp...
To probe metal particle/reducible oxide interactions density functional theory based ab initio molec...
Au based catalysts have been extensively studied since Masatake Haruta in Japan discovered that smal...
A comprehensive theoretical study of a Au15Cu15 cluster on MgO(100) supports and its catalytic activ...
Coordinatively unsaturated corner and edge atoms have been hypothesized to have the highest activity...
Although gold in bulk is poorly active as a catalyst, it exhibits surprisingly high catalytic activi...
Nanometer sized metal clusters dispersed on oxide supports often exhibit much higher activity than s...
First-principles calculations are performed to study the adsorption and oxidation of CO on three dec...
In order to bridge the `material gap' in heterogeneous catalysis it is shown that supported model ca...
Aiming at understanding the elementary steps governing the oxidation of CO catalyzed by dispersed or...
The present density functional theory study addresses the question whether the presence of H2O influ...
The morphology of small metal clusters can have a big impact on their electronic, magnetic, and chem...
Recently there has been a surge in research pertaining to the physical and chemical properties of go...
During the last decades the specific manipulation of matter on the (sub-) nanometer scale, also know...
Chemical reactivity of transition metal clusters toward various molecules in gas phase has been a su...
Density functional simulations have been performed for Au7Cu23 and Au23Cu7 clusters on MgO(100) supp...
To probe metal particle/reducible oxide interactions density functional theory based ab initio molec...
Au based catalysts have been extensively studied since Masatake Haruta in Japan discovered that smal...
A comprehensive theoretical study of a Au15Cu15 cluster on MgO(100) supports and its catalytic activ...
Coordinatively unsaturated corner and edge atoms have been hypothesized to have the highest activity...
Although gold in bulk is poorly active as a catalyst, it exhibits surprisingly high catalytic activi...
Nanometer sized metal clusters dispersed on oxide supports often exhibit much higher activity than s...
First-principles calculations are performed to study the adsorption and oxidation of CO on three dec...
In order to bridge the `material gap' in heterogeneous catalysis it is shown that supported model ca...
Aiming at understanding the elementary steps governing the oxidation of CO catalyzed by dispersed or...
The present density functional theory study addresses the question whether the presence of H2O influ...
The morphology of small metal clusters can have a big impact on their electronic, magnetic, and chem...