New highly active electrocatalysts were obtained by depositing bimetallic Pt-Cu nanoparticles on the surface of an N-doped carbon support. The structural–morphological characteristics and electrochemical behavior of the catalysts were studied. Using current stress testing protocols, their resistance to degradation was assessed in comparison with that of a commercial Pt/C material. A combined approach to catalyst synthesis that consists in alloying platinum with copper and doping the support makes it possible to obtain catalysts with a uniform distribution of bimetallic nanoparticles on the carbon surface. The obtained catalysts exhibit high activity and durability
The durability and long-term applicability of catalysts are critical parameters for the commercializ...
Pt-based nanostructured electrocatalysts supported on carbon black have been widely studied for the ...
The oxygen reduction reaction (ORR) was investigated on carbon-supported Pt-Co nanoparticle electroc...
Carbon supported Pt-Cu catalyst (PtCu/C) with surface enriched Pt was synthesized by annealing the P...
Pt/Cu salt co-reduction and, subsequent reduction of Cu(acac)2 and PtCl2 allows to generate either a...
A highly active Pt-Cu bimetallic catalyst for the electrocatalytic oxygen reduction reaction, with a...
Platinum–carbon catalysts are widely used in the manufacturing of proton-exchange membrane fuel cell...
Boosting the durability of Pt nanoparticles by controlling the composition and morphology is extreme...
Platinum electrocatalysts for the oxygen reduction reaction have been prepared by impregnation of pl...
In this work, Vulcan carbon-supported cube-shape Pt nanoparticles with various metal loadings were s...
Compared to nanostructured platinum (Pt) catalysts, ordered Pt-based intermetallic nanoparticles sup...
Platinum and Pt-alloys are at present the best catalysts for oxygen reduction in PEM fuel cells. Sin...
PdPt bimetallic nanoparticles on carbon-based supports functioning as advanced electrode materials h...
To evaluate supports’ effects on catalytic activity toward the oxygen reduction reaction (ORR), a si...
Polymer electrolyte membrane (PEM) fuel cells have been viewed as promising power source candidates ...
The durability and long-term applicability of catalysts are critical parameters for the commercializ...
Pt-based nanostructured electrocatalysts supported on carbon black have been widely studied for the ...
The oxygen reduction reaction (ORR) was investigated on carbon-supported Pt-Co nanoparticle electroc...
Carbon supported Pt-Cu catalyst (PtCu/C) with surface enriched Pt was synthesized by annealing the P...
Pt/Cu salt co-reduction and, subsequent reduction of Cu(acac)2 and PtCl2 allows to generate either a...
A highly active Pt-Cu bimetallic catalyst for the electrocatalytic oxygen reduction reaction, with a...
Platinum–carbon catalysts are widely used in the manufacturing of proton-exchange membrane fuel cell...
Boosting the durability of Pt nanoparticles by controlling the composition and morphology is extreme...
Platinum electrocatalysts for the oxygen reduction reaction have been prepared by impregnation of pl...
In this work, Vulcan carbon-supported cube-shape Pt nanoparticles with various metal loadings were s...
Compared to nanostructured platinum (Pt) catalysts, ordered Pt-based intermetallic nanoparticles sup...
Platinum and Pt-alloys are at present the best catalysts for oxygen reduction in PEM fuel cells. Sin...
PdPt bimetallic nanoparticles on carbon-based supports functioning as advanced electrode materials h...
To evaluate supports’ effects on catalytic activity toward the oxygen reduction reaction (ORR), a si...
Polymer electrolyte membrane (PEM) fuel cells have been viewed as promising power source candidates ...
The durability and long-term applicability of catalysts are critical parameters for the commercializ...
Pt-based nanostructured electrocatalysts supported on carbon black have been widely studied for the ...
The oxygen reduction reaction (ORR) was investigated on carbon-supported Pt-Co nanoparticle electroc...