Industrial catalysts are often comprised of nanoparticles supported on high-surface-area oxides, in order to maximise the catalytically active surface area and thereby utilise the active material better. These nanoparticles expose steps and corners that, due to low coordination to neighboring atoms, are more reactive and, as a consequence, are often assumed to have higher catalytic activity. We have investigated the reaction between CO and preadsorbed O on a stepped Rh(553) surface, and show that CO oxidation indeed occurs faster than on the flat Rh(111) surface at the same temperature. However, we do find that this is not a result of reactions at the step sites but rather at the terrace sites close to the steps, due to in-plane relaxation ...
Recent studies suggest that surface oxides on transition metal nanoparticles play an important role ...
We show that catalytic activity of bimetallic Rh0.5Pt0.5 nanoparticle arrays under CO oxidation can ...
We show that catalytic activity of bimetallic Rh0.5Pt0.5 nanoparticle arrays under CO oxidation can ...
Industrial catalysts are often comprised of nanoparticles supported on high-surface-area oxides, in ...
Industrial catalysts are often comprised of nanoparticles supported on high-surface-area oxides, in ...
Industrial catalysts are often comprised of nanoparticles supported on high-surface-area oxides, in ...
Industrial catalysts are often comprised of nanoparticles supported on high-surface-area oxides, in ...
A catalyst is a substance that can speed up the rate of a chemical reaction without itself being con...
Curved crystals are a simple but powerful approach to bridge the gap between single crystal surfaces...
Abstract: CO oxidation, as one of the simplest catalytic reactions, has been widely studied in heter...
To understand how the CO oxidation reaction proceeds on nanoparticles, which have complex surface st...
Curved crystals are a simple but powerful approach to bridge the gap between single crystal surfaces...
A catalyst is a substance that can speed up the rate of a chemical reaction without itself being con...
Recent studies suggest that surface oxides on transition metal nanoparticles play an important role ...
Curved crystals are a simple but powerful approach to bridge the gap between single crystal surfaces...
Recent studies suggest that surface oxides on transition metal nanoparticles play an important role ...
We show that catalytic activity of bimetallic Rh0.5Pt0.5 nanoparticle arrays under CO oxidation can ...
We show that catalytic activity of bimetallic Rh0.5Pt0.5 nanoparticle arrays under CO oxidation can ...
Industrial catalysts are often comprised of nanoparticles supported on high-surface-area oxides, in ...
Industrial catalysts are often comprised of nanoparticles supported on high-surface-area oxides, in ...
Industrial catalysts are often comprised of nanoparticles supported on high-surface-area oxides, in ...
Industrial catalysts are often comprised of nanoparticles supported on high-surface-area oxides, in ...
A catalyst is a substance that can speed up the rate of a chemical reaction without itself being con...
Curved crystals are a simple but powerful approach to bridge the gap between single crystal surfaces...
Abstract: CO oxidation, as one of the simplest catalytic reactions, has been widely studied in heter...
To understand how the CO oxidation reaction proceeds on nanoparticles, which have complex surface st...
Curved crystals are a simple but powerful approach to bridge the gap between single crystal surfaces...
A catalyst is a substance that can speed up the rate of a chemical reaction without itself being con...
Recent studies suggest that surface oxides on transition metal nanoparticles play an important role ...
Curved crystals are a simple but powerful approach to bridge the gap between single crystal surfaces...
Recent studies suggest that surface oxides on transition metal nanoparticles play an important role ...
We show that catalytic activity of bimetallic Rh0.5Pt0.5 nanoparticle arrays under CO oxidation can ...
We show that catalytic activity of bimetallic Rh0.5Pt0.5 nanoparticle arrays under CO oxidation can ...