A new class of efficient electrocatalytic materials based on platinum - metal oxide systems has been synthetized and characterized by several techniques. Best activity was found with NiWO{sub 4}-, CoWO{sub 4}-, and RuO{sub 2}- sr¡pported platinum catalysts. A very similar activity at room temperature was observed with the electrodes prepared with the catalyst obtained from International Fuel Cells Inc. for the same Pt loading. Surprisingly, the two tungstates per se show a small activity for methanol oxidation without any Pt loading. Synthesis of NiWO{sub 4} and CoWO{sub 4} were carried out by solid-state reactions. FTIR spectroscopy shows that the tungstates contain a certain amount of physically adsorbed water even after heating samples a...
Tungsten trioxide microspheres of 2-1 mu m diameter have been prepared by controlled oxidation of tu...
Electroplating of WO3-Pt has been carried out using a suitable plating bath solution and optimum wor...
It is generally accepted that Pt-Ru alloy catalysts with an atomic Pt-to-Ru ratio of 1:1 generate th...
The bifunctional model for methanol electro-oxidation suggests that competent catalysts should conta...
Carbon-supported platinum is commonly used as an anode electrocatalyst in low-temperature fuel cells...
In this work, methanol oxidation was studied on carbon-supported Pt-Ru nanocatalysts, where the amou...
A carbon-supported (1:1) Pt-Ru (Pt-Ru/C) alloy catalyst has been prepared in-house by the sulfito-co...
Pt-Ru/C, Pt-Dy and Pt-Ru-Mo/C electrocatalysts prepared by Bönnemann´s method have been studied as p...
Pt-Ru electrocatalysts are commonly applied anode materials for low-temperature fuel cells, as the a...
The electrocatalytic activity of Pt and RuO(2) mixed electrodes of different compositions towards me...
The activities of three platinum ruthenium carbon supported catalysts of the same nominal compositio...
In order for polymer electrolyte fuel cells to operate directly on methanol instead of hydrogen, met...
In this work, high-surface supported PtRu/C were prepared with Ru(NO)(NO3)(3) and [Pt(H2NCH2CH2NH2)(...
We propose a high performance electrocatalyst based on Pt-Ru-NiTiO3 nanoparticles supported on Vulca...
Direct methanol fuel cell (DMFC) has been attracting lots of attention as a power source for transpo...
Tungsten trioxide microspheres of 2-1 mu m diameter have been prepared by controlled oxidation of tu...
Electroplating of WO3-Pt has been carried out using a suitable plating bath solution and optimum wor...
It is generally accepted that Pt-Ru alloy catalysts with an atomic Pt-to-Ru ratio of 1:1 generate th...
The bifunctional model for methanol electro-oxidation suggests that competent catalysts should conta...
Carbon-supported platinum is commonly used as an anode electrocatalyst in low-temperature fuel cells...
In this work, methanol oxidation was studied on carbon-supported Pt-Ru nanocatalysts, where the amou...
A carbon-supported (1:1) Pt-Ru (Pt-Ru/C) alloy catalyst has been prepared in-house by the sulfito-co...
Pt-Ru/C, Pt-Dy and Pt-Ru-Mo/C electrocatalysts prepared by Bönnemann´s method have been studied as p...
Pt-Ru electrocatalysts are commonly applied anode materials for low-temperature fuel cells, as the a...
The electrocatalytic activity of Pt and RuO(2) mixed electrodes of different compositions towards me...
The activities of three platinum ruthenium carbon supported catalysts of the same nominal compositio...
In order for polymer electrolyte fuel cells to operate directly on methanol instead of hydrogen, met...
In this work, high-surface supported PtRu/C were prepared with Ru(NO)(NO3)(3) and [Pt(H2NCH2CH2NH2)(...
We propose a high performance electrocatalyst based on Pt-Ru-NiTiO3 nanoparticles supported on Vulca...
Direct methanol fuel cell (DMFC) has been attracting lots of attention as a power source for transpo...
Tungsten trioxide microspheres of 2-1 mu m diameter have been prepared by controlled oxidation of tu...
Electroplating of WO3-Pt has been carried out using a suitable plating bath solution and optimum wor...
It is generally accepted that Pt-Ru alloy catalysts with an atomic Pt-to-Ru ratio of 1:1 generate th...