Metallic nanoparticles finely dispersed over oxide supports have found use as heterogeneous catalysts in many industries including chemical manufacturing, energy-related applications and environmental remediation. The compositional and structural complexity of such nanosized systems offers many degrees of freedom for tuning their catalytic properties. However, fully rational design of heterogeneous catalysts based on an atomic-level understanding of surface processes remains an unattained goal in catalysis research. Researchers have used surface science methods and metal single crystals to explore elementary processes in heterogeneous catalysis. In this Account, we use more realistic materials that capture part of the complexity inherent to...
We aim to develop novel catalysts that exhibit high activity, selectivity and stability under real c...
These studies investigate the nucleation and growth of nanoparticles and how their interaction with ...
The fabrication of oxide particles with tunable sizes and shapes at the nanoscale is one of the most...
Heterogeneous catalysts are widely employed in technological applications, such as chemical manufact...
Supported metal nanostructures are the most widely used type of heterogeneous catalyst in industrial...
The development of model catalyst systems for heterogeneous catalysis going beyond the metal single ...
The development of model catalyst systems for heterogeneous catalysis going beyond the metal single ...
Nanoparticles(NPs) have been widely utilized as an excellent catalyst for many catalytic reactions. ...
Industrial heterogeneous catalysts, composed of metal nanoparticles, have been widely utilized owing...
After a general introduction to model studies in catalysis, results from different research areas ar...
Vacuum studies of metal single crystal surfaces using electron and molecular beam scattering reveale...
The development of model catalyst systems for heterogeneous catalysis going beyond the metal single ...
In recent heterogeneous catalysis, much effort has been made in understanding how the size, shape, a...
Small Au particles have been shown to exhibit interesting catalytic properties. In an attempt to par...
Rapidly growing research interests surround heterogeneous nanocatalysis, in which metal nanoparticle...
We aim to develop novel catalysts that exhibit high activity, selectivity and stability under real c...
These studies investigate the nucleation and growth of nanoparticles and how their interaction with ...
The fabrication of oxide particles with tunable sizes and shapes at the nanoscale is one of the most...
Heterogeneous catalysts are widely employed in technological applications, such as chemical manufact...
Supported metal nanostructures are the most widely used type of heterogeneous catalyst in industrial...
The development of model catalyst systems for heterogeneous catalysis going beyond the metal single ...
The development of model catalyst systems for heterogeneous catalysis going beyond the metal single ...
Nanoparticles(NPs) have been widely utilized as an excellent catalyst for many catalytic reactions. ...
Industrial heterogeneous catalysts, composed of metal nanoparticles, have been widely utilized owing...
After a general introduction to model studies in catalysis, results from different research areas ar...
Vacuum studies of metal single crystal surfaces using electron and molecular beam scattering reveale...
The development of model catalyst systems for heterogeneous catalysis going beyond the metal single ...
In recent heterogeneous catalysis, much effort has been made in understanding how the size, shape, a...
Small Au particles have been shown to exhibit interesting catalytic properties. In an attempt to par...
Rapidly growing research interests surround heterogeneous nanocatalysis, in which metal nanoparticle...
We aim to develop novel catalysts that exhibit high activity, selectivity and stability under real c...
These studies investigate the nucleation and growth of nanoparticles and how their interaction with ...
The fabrication of oxide particles with tunable sizes and shapes at the nanoscale is one of the most...