ybrid supports composed of chemically-reduced graphene-oxide-aligned with tungsten oxide nanowires are considered here as active carriers for dispersed platinum with an ultimate goal of producing improved catalysts for electroreduction of oxygen in acid medium. Here WO3 nanostructures are expected to be attached mainly to the edges of graphene thus making the hybrid structure not only highly porous but also capable of preventing graphene stacking and creating numerous sites for the deposition of Pt nanoparticles. Comparison has been made to the analogous systems utilizing neither reduced graphene oxide nor tungsten oxide component. By over-coating the reduced-graphene-oxide support with WO3 nanorods, the electrocatalytic activity of the sys...
Tungsten oxide (WO3 · 0.33H2O) networks and nanorods were prepared by a hydrothermal method. Platinu...
Electrocatalysis of oxygen reduction using Pt nanoparticles supported on functionalized graphene she...
Chemically-reduced graphene-oxide-supported gold nanoparticles with a diameter, of 40-60 nm are cons...
Chemically-reduced graphene-oxide-supported gold or iridium nanoparticles are considered here as act...
We demonstrated highly efficient oxygen reduction catalysts composed of uniform Pt nanoparticles on ...
WO3 was investigated as a possible support material for monolayer Pt ORR electrocatalysts in acid el...
Chemically-reduced graphene-oxide-supported gold nanoparticles with a diameter, of 40-60 nm are cons...
Platinum nanocatalyst at nano-tungsten carbide was synthesized, characterized and tested for oxygen ...
Platinum nanocatalysts on two tungsten based supports have been synthesized and characterized as cat...
In this paper, we report that WOx containing nanoalloys exhibit stable electrocatalytic performance ...
The growth of a promising material system for high-temperature polymer-electrolyte-membrane-fuel, ce...
Abstract: Artificial photosynthesis is a very attractive and a desirable way to solve the rising ene...
International audienceWell-defined tungsten-oxide-supported platinum nanoparticles (Pt/WOx) were ela...
Platinum is a main catalyst for the electroreduction of oxygen, a reaction of primary importance to ...
Tungsten oxide (WO3 · 0.33H2O) networks and nanorods were prepared by a hydrothermal method. Platinu...
Electrocatalysis of oxygen reduction using Pt nanoparticles supported on functionalized graphene she...
Chemically-reduced graphene-oxide-supported gold nanoparticles with a diameter, of 40-60 nm are cons...
Chemically-reduced graphene-oxide-supported gold or iridium nanoparticles are considered here as act...
We demonstrated highly efficient oxygen reduction catalysts composed of uniform Pt nanoparticles on ...
WO3 was investigated as a possible support material for monolayer Pt ORR electrocatalysts in acid el...
Chemically-reduced graphene-oxide-supported gold nanoparticles with a diameter, of 40-60 nm are cons...
Platinum nanocatalyst at nano-tungsten carbide was synthesized, characterized and tested for oxygen ...
Platinum nanocatalysts on two tungsten based supports have been synthesized and characterized as cat...
In this paper, we report that WOx containing nanoalloys exhibit stable electrocatalytic performance ...
The growth of a promising material system for high-temperature polymer-electrolyte-membrane-fuel, ce...
Abstract: Artificial photosynthesis is a very attractive and a desirable way to solve the rising ene...
International audienceWell-defined tungsten-oxide-supported platinum nanoparticles (Pt/WOx) were ela...
Platinum is a main catalyst for the electroreduction of oxygen, a reaction of primary importance to ...
Tungsten oxide (WO3 · 0.33H2O) networks and nanorods were prepared by a hydrothermal method. Platinu...
Electrocatalysis of oxygen reduction using Pt nanoparticles supported on functionalized graphene she...
Chemically-reduced graphene-oxide-supported gold nanoparticles with a diameter, of 40-60 nm are cons...