Nanoparticle sintering during catalytic reactions is a major cause for catalyst deactivation. Understanding its atomic-scale processes and finding strategies to reduce it is of paramount scientific and economic interest. Here, we report on the composition-dependent three-dimensional restructuring of epitaxial platinum-rhodium alloy nanoparticles on alumina during carbon monoxide oxidation at 550 K and near-atmospheric pressures employing in situ high-energy grazing incidence x-ray diffraction, online mass spectrometry and a combinatorial sample design. For platinum-rich particles our results disclose a dramatic reaction-induced height increase, accompanied by a corresponding reduction of the total particle surface coverage. We find this res...
Employing rationally designed model systems with precise atom-by-atom particle size control, we demo...
Alumina-supported platinum–silver alloy nanoparticle (Pt–Ag/Al2O3) catalysts with different particle...
Summarization: The thermal sintering under oxidative conditions of Rh nanoparticles supported on oxi...
Pt-Rh alloy nanoparticles on oxide supports are widely employed in heterogeneous catalysis with appl...
This thesis provides a growth study of α-Al2O3(0001) supported Pt particles and subsequent structure...
CO oxidation is one of the most studied heterogeneous reactions, being scientifically and industrial...
The structural deactivation of supported noble metal catalysts has been investigated for treatments ...
The catalytically active speci0920-5861es during the oxidation of carbon monoxide over a real alumin...
This study addresses the sintering mechanism of Pt nanoparticles dispersed on a planar, amorphous Al...
Noble metal-based catalysts are ubiquitous because of their high activity and stability. However, th...
To improve the understanding of sintering in diesel and lean-burn engine exhaust aftertreatment cata...
Understanding how nanostructure and atomic-scale defects of the support affect metal catalyst nanopa...
The thermal sintering under oxidative conditions of Rh nanoparticles supported on oxides characteriz...
Recent breakthroughs in synthesis in nanoscience have achieved control of size and composition of na...
The damaging effect of pollutants from combustion engine exhaust on human health and environment is ...
Employing rationally designed model systems with precise atom-by-atom particle size control, we demo...
Alumina-supported platinum–silver alloy nanoparticle (Pt–Ag/Al2O3) catalysts with different particle...
Summarization: The thermal sintering under oxidative conditions of Rh nanoparticles supported on oxi...
Pt-Rh alloy nanoparticles on oxide supports are widely employed in heterogeneous catalysis with appl...
This thesis provides a growth study of α-Al2O3(0001) supported Pt particles and subsequent structure...
CO oxidation is one of the most studied heterogeneous reactions, being scientifically and industrial...
The structural deactivation of supported noble metal catalysts has been investigated for treatments ...
The catalytically active speci0920-5861es during the oxidation of carbon monoxide over a real alumin...
This study addresses the sintering mechanism of Pt nanoparticles dispersed on a planar, amorphous Al...
Noble metal-based catalysts are ubiquitous because of their high activity and stability. However, th...
To improve the understanding of sintering in diesel and lean-burn engine exhaust aftertreatment cata...
Understanding how nanostructure and atomic-scale defects of the support affect metal catalyst nanopa...
The thermal sintering under oxidative conditions of Rh nanoparticles supported on oxides characteriz...
Recent breakthroughs in synthesis in nanoscience have achieved control of size and composition of na...
The damaging effect of pollutants from combustion engine exhaust on human health and environment is ...
Employing rationally designed model systems with precise atom-by-atom particle size control, we demo...
Alumina-supported platinum–silver alloy nanoparticle (Pt–Ag/Al2O3) catalysts with different particle...
Summarization: The thermal sintering under oxidative conditions of Rh nanoparticles supported on oxi...