Alloy nanoparticles on oxide supports are widely used as heterogeneous catalysts in reactions involving oxygen. Here we discuss the oxidation behavior of Pd–Rh alloy nanoparticles on MgAl2O4(001) supports with a particle diameter from 6–11 nm. As an In situ tool, we employed high energy grazing incidence X-ray diffraction at a photon energy of 85 keV. We find that physical vapor deposited Pd–Rh nanoparticles grow epitaxially on MgAl2O4(001) with a truncated octahedral shape over the whole concentration range. During our systematic oxidation experiments performed at 670 K in the pressure range from 10^−3 to 0.1 mbar, we observe for Rh containing nanoparticles the formation of two different Rh oxide phases, namely RhO2 and a spinel-like Rh3O4...
We studied the interaction of oxygen with MgO(100) supported Pd nanoparticles at 10–5 mbar oxygen pr...
Nanoparticle sintering during catalytic reactions is a major cause for catalyst deactivation. Unders...
Heterogeneous catalysts that contain bimetallic nanoparticles may undergo segregation of the metals,...
Alloy nanoparticles on oxide supports are widely used as heterogeneous catalysts in reactions involv...
Platinum group metals (PGMs) are used in numerous catalyst applications, including conversion of eng...
Energy Dispersive Extended X-ray Absorption Fine Structure (EDE), Transmission Electron Microscopy (...
Using in situ high-pressure x-ray photoelectron spectroscopy, we have followed the oxidation and the...
CO oxidation is one of the most studied heterogeneous reactions, being scientifically and industrial...
The role of metal–support epitaxy on shape and size heterogeneity of nanoparticles and their respons...
We have studied the oxidation and reduction of Rh(100) and SiO2 supported Rh particles using high pr...
Noble metal nanoparticles supported by oxide carriers are widely employed in heterogeneous catalysis...
We have quantitatively studied the interaction between oxygen and an Fe3O4-supported Pd model cataly...
Pt-Rh alloy nanoparticles on oxide supports are widely employed in heterogeneous catalysis with appl...
We have studied the influence of oxygen on the structure and morphology of a Pd/Fe3O4 model catalyst...
Heterogeneous catalysts that contain bimetallic nanoparticles may undergo segregation of the metals,...
We studied the interaction of oxygen with MgO(100) supported Pd nanoparticles at 10–5 mbar oxygen pr...
Nanoparticle sintering during catalytic reactions is a major cause for catalyst deactivation. Unders...
Heterogeneous catalysts that contain bimetallic nanoparticles may undergo segregation of the metals,...
Alloy nanoparticles on oxide supports are widely used as heterogeneous catalysts in reactions involv...
Platinum group metals (PGMs) are used in numerous catalyst applications, including conversion of eng...
Energy Dispersive Extended X-ray Absorption Fine Structure (EDE), Transmission Electron Microscopy (...
Using in situ high-pressure x-ray photoelectron spectroscopy, we have followed the oxidation and the...
CO oxidation is one of the most studied heterogeneous reactions, being scientifically and industrial...
The role of metal–support epitaxy on shape and size heterogeneity of nanoparticles and their respons...
We have studied the oxidation and reduction of Rh(100) and SiO2 supported Rh particles using high pr...
Noble metal nanoparticles supported by oxide carriers are widely employed in heterogeneous catalysis...
We have quantitatively studied the interaction between oxygen and an Fe3O4-supported Pd model cataly...
Pt-Rh alloy nanoparticles on oxide supports are widely employed in heterogeneous catalysis with appl...
We have studied the influence of oxygen on the structure and morphology of a Pd/Fe3O4 model catalyst...
Heterogeneous catalysts that contain bimetallic nanoparticles may undergo segregation of the metals,...
We studied the interaction of oxygen with MgO(100) supported Pd nanoparticles at 10–5 mbar oxygen pr...
Nanoparticle sintering during catalytic reactions is a major cause for catalyst deactivation. Unders...
Heterogeneous catalysts that contain bimetallic nanoparticles may undergo segregation of the metals,...