The hydrolysis of H2PtCl6, RuCl3, OsCl3, and H2IrCl6 under basic conditions in the presence of a water-soluble betaine stabilizer affords aqueous colloidal solutions of the mixed metal oxide PtRuOsIrOx displaying a particle size of 1.3-1.6 nm. The ratio of the four metals can be adjusted by choosing the appropriate relative amounts of metal salts. Characterization was accomplished by TEM, XPS, and XRD. Immobilization of the reduced form on high surface conducting carbon leads to materials which are excellent electrocatalysts showing unusually high resistance to CO poisoning
The cathodic corrosion method described here is a simple, clean, and fast way of synthesizing nanoal...
The Bönnemann method was chosen to synthesize carbon-supported Pt-Ru-Mo electrocatalyst powders, as ...
A key enabling step in leveraging the properties of nanoparticles (NPs) is to explore new, simple, c...
The hydrolysis of H2PtCl6, RuCl3, OsCl3, and H2IrCl6 under basic conditions in the presence of a wat...
Ultrasmall nanoparticles of platinum group metal oxides (core diameter of about 1.8 nm) were prepare...
The aim of this project was to develop a new preparative route leading to the synthesis of bimetalli...
Ternary Pt-Ru-Co nanoparticles are prepared by microemulsions procession. These resulting materials ...
In the anodes of direct methanol fuel cells (DMFCs), Pt poisoning by CO adsorption during methanol e...
Monodisperse, submicrometer-scale platinum (Pt) colloidal spheres were prepared through a simple dir...
Electrocatalytic oxidation of ethanol in acid medium (0.5mol dm3 H2SO4) was significantly enhanced b...
International audienceRu-modified Pt nanoparticle surfaces were prepared using Ru electrochemical or...
The electrocatalysts of Pt/C, PtRu/C and Ru/C were prepared by the impregnation method. The facet ch...
Oxide supports can modify and stabilize platinum nanoparticles (NPs) in electrocatalytic materials. ...
Transition metal oxides and hydroxides have utility in electrochemical catalysis and electronic appl...
The reduced sensitivity of Pt–Ru alloys towards CO poisoning results from two effects: the ligand ef...
The cathodic corrosion method described here is a simple, clean, and fast way of synthesizing nanoal...
The Bönnemann method was chosen to synthesize carbon-supported Pt-Ru-Mo electrocatalyst powders, as ...
A key enabling step in leveraging the properties of nanoparticles (NPs) is to explore new, simple, c...
The hydrolysis of H2PtCl6, RuCl3, OsCl3, and H2IrCl6 under basic conditions in the presence of a wat...
Ultrasmall nanoparticles of platinum group metal oxides (core diameter of about 1.8 nm) were prepare...
The aim of this project was to develop a new preparative route leading to the synthesis of bimetalli...
Ternary Pt-Ru-Co nanoparticles are prepared by microemulsions procession. These resulting materials ...
In the anodes of direct methanol fuel cells (DMFCs), Pt poisoning by CO adsorption during methanol e...
Monodisperse, submicrometer-scale platinum (Pt) colloidal spheres were prepared through a simple dir...
Electrocatalytic oxidation of ethanol in acid medium (0.5mol dm3 H2SO4) was significantly enhanced b...
International audienceRu-modified Pt nanoparticle surfaces were prepared using Ru electrochemical or...
The electrocatalysts of Pt/C, PtRu/C and Ru/C were prepared by the impregnation method. The facet ch...
Oxide supports can modify and stabilize platinum nanoparticles (NPs) in electrocatalytic materials. ...
Transition metal oxides and hydroxides have utility in electrochemical catalysis and electronic appl...
The reduced sensitivity of Pt–Ru alloys towards CO poisoning results from two effects: the ligand ef...
The cathodic corrosion method described here is a simple, clean, and fast way of synthesizing nanoal...
The Bönnemann method was chosen to synthesize carbon-supported Pt-Ru-Mo electrocatalyst powders, as ...
A key enabling step in leveraging the properties of nanoparticles (NPs) is to explore new, simple, c...