AbstractIridium nanoparticles deposited on a variety of surfaces exhibited thermal sintering characteristics that were very strongly correlated with the lability of lattice oxygen in the supporting oxide materials. Specifically, the higher the lability of oxygen ions in the support, the greater the resistance of the nanoparticles to sintering in an oxidative environment. Thus with γ-Al2O3 as the support, rapid and extensive sintering occurred. In striking contrast, when supported on gadolinia-ceria and alumina-ceria-zirconia composite, the Ir nanoparticles underwent negligible sintering. In keeping with this trend, the behavior found with yttria-stabilized zirconia was an intermediate between the two extremes. This resistance, or lack of re...
The sintering of precious metal catalysts is an important problem for the automotive and chemical pr...
The catalytic decomposition of N2O by small rhodium particles (0.5–4.0 nm in diameter) supported on ...
Ceramics materials based on yttria stabilised tetragonal zirconia nanopowders (3Y-TZP) are widely us...
Summarization: Iridium nanoparticles deposited on a variety of surfaces exhibited thermal sintering ...
AbstractIridium nanoparticles deposited on a variety of surfaces exhibited thermal sintering charact...
The effect of the morphology of Ir particles supported on γ-Al2O3, 8 mol%Y2O3-stabilized ZrO2 (YSZ),...
Summarization: The effect of the morphology of Ir particles supported on γ-Al2O3, 8 mol%Y2O3-stabili...
Summarization: The thermal sintering under oxidative conditions of Rh nanoparticles supported on oxi...
The thermal sintering under oxidative conditions of Rh nanoparticles supported on oxides characteriz...
Studies were performed on three different catalysts in order to determine their stability and sinter...
The production of syngas (H2 and CO)-a key building block for the manufacture of liquid energy carri...
The production of syngas (H2 and CO)—a key building block for the manufacture of liquid energy carri...
Summarization: The production of syngas (H2 and CO)—a key building block for the manufacture of liqu...
One of the technologically most important requirements for the application of supported metal nanopa...
One of the technologically most important requirements for the application of supported metal nanopa...
The sintering of precious metal catalysts is an important problem for the automotive and chemical pr...
The catalytic decomposition of N2O by small rhodium particles (0.5–4.0 nm in diameter) supported on ...
Ceramics materials based on yttria stabilised tetragonal zirconia nanopowders (3Y-TZP) are widely us...
Summarization: Iridium nanoparticles deposited on a variety of surfaces exhibited thermal sintering ...
AbstractIridium nanoparticles deposited on a variety of surfaces exhibited thermal sintering charact...
The effect of the morphology of Ir particles supported on γ-Al2O3, 8 mol%Y2O3-stabilized ZrO2 (YSZ),...
Summarization: The effect of the morphology of Ir particles supported on γ-Al2O3, 8 mol%Y2O3-stabili...
Summarization: The thermal sintering under oxidative conditions of Rh nanoparticles supported on oxi...
The thermal sintering under oxidative conditions of Rh nanoparticles supported on oxides characteriz...
Studies were performed on three different catalysts in order to determine their stability and sinter...
The production of syngas (H2 and CO)-a key building block for the manufacture of liquid energy carri...
The production of syngas (H2 and CO)—a key building block for the manufacture of liquid energy carri...
Summarization: The production of syngas (H2 and CO)—a key building block for the manufacture of liqu...
One of the technologically most important requirements for the application of supported metal nanopa...
One of the technologically most important requirements for the application of supported metal nanopa...
The sintering of precious metal catalysts is an important problem for the automotive and chemical pr...
The catalytic decomposition of N2O by small rhodium particles (0.5–4.0 nm in diameter) supported on ...
Ceramics materials based on yttria stabilised tetragonal zirconia nanopowders (3Y-TZP) are widely us...