Pt-Ru/C nanocatalysts were prepared by a microemulsion method using different values of water/surfactant molar ratio in order to get different particle sizes. Crystallite sizes and structural properties were determined by X-ray diffraction. Particle size and distribution were characterized by transmission electron microscopy and average composition was determined by energy-dispersive X-ray analysis. Thermogravimetric analysis was used to estimate the amount of supported metals. Differential scanning calorimetry measurements indicated the presence of hydrous ruthenium oxides in the as-prepared catalysts. Results for the oxidation of adsorbed CO as well as for methanol oxidation revealed significant differences in the behavior of the prepared...
Ternary platinum-ruthenium-nickel nanoparticles are prepared by water-in-oil reverse microemulsions ...
International audiencePt-Co/C electrocatalysts with Pt loadings near 30 wt. % prepared by the impreg...
Carbon-supported Pt-Ru alloys with a Pt/Ru ratio of 1:1 were prepared by NaBH4 reduction at room tem...
Ternary Pt-Ru-Co nanoparticles are prepared by microemulsions procession. These resulting materials ...
Mixed platinum-ruthenium nanoparticles are prepared by water-in-oil reverse micro-emulsions of water...
The Pt-Ru/C materials of this study were prepared by a microemulsion method with fixed water to surf...
The Pt-Ru/C materials of this study were prepared by a microemulsion method with fixed water to surf...
Individual Pt-Ru nanoparticles (NPs) supported on multiwall carbon nanotubes (MWCNTs) synthesized by...
The Bönnemann method was chosen to synthesize carbon-supported Pt-Ru-Mo electrocatalyst powders, as ...
Commercially available carbon-supported pure Pt and pure Ru catalysts were heat treated in order to ...
Ru@Pt core–shell particles are relevant for application as electrocatalysts in fuel cells. The Ru co...
In this work, methanol oxidation was studied on carbon-supported Pt-Ru nanocatalysts, where the amou...
Carbon monoxide oxidation over ruthenium catalysts has shown an unusual catalytic behavior Here we r...
Ru-modified Pt nanoparticles of various sizes on platelet carbon nanofiber toward methanol oxidation...
The electrocatalysts of Pt/C, PtRu/C and Ru/C were prepared by the impregnation method. The facet ch...
Ternary platinum-ruthenium-nickel nanoparticles are prepared by water-in-oil reverse microemulsions ...
International audiencePt-Co/C electrocatalysts with Pt loadings near 30 wt. % prepared by the impreg...
Carbon-supported Pt-Ru alloys with a Pt/Ru ratio of 1:1 were prepared by NaBH4 reduction at room tem...
Ternary Pt-Ru-Co nanoparticles are prepared by microemulsions procession. These resulting materials ...
Mixed platinum-ruthenium nanoparticles are prepared by water-in-oil reverse micro-emulsions of water...
The Pt-Ru/C materials of this study were prepared by a microemulsion method with fixed water to surf...
The Pt-Ru/C materials of this study were prepared by a microemulsion method with fixed water to surf...
Individual Pt-Ru nanoparticles (NPs) supported on multiwall carbon nanotubes (MWCNTs) synthesized by...
The Bönnemann method was chosen to synthesize carbon-supported Pt-Ru-Mo electrocatalyst powders, as ...
Commercially available carbon-supported pure Pt and pure Ru catalysts were heat treated in order to ...
Ru@Pt core–shell particles are relevant for application as electrocatalysts in fuel cells. The Ru co...
In this work, methanol oxidation was studied on carbon-supported Pt-Ru nanocatalysts, where the amou...
Carbon monoxide oxidation over ruthenium catalysts has shown an unusual catalytic behavior Here we r...
Ru-modified Pt nanoparticles of various sizes on platelet carbon nanofiber toward methanol oxidation...
The electrocatalysts of Pt/C, PtRu/C and Ru/C were prepared by the impregnation method. The facet ch...
Ternary platinum-ruthenium-nickel nanoparticles are prepared by water-in-oil reverse microemulsions ...
International audiencePt-Co/C electrocatalysts with Pt loadings near 30 wt. % prepared by the impreg...
Carbon-supported Pt-Ru alloys with a Pt/Ru ratio of 1:1 were prepared by NaBH4 reduction at room tem...