International audiencePt-Co/C electrocatalysts with Pt loadings near 30 wt. % prepared by the impregnation method in water - ethylene glycol solutions were investigated by X-ray diffraction and correlated with electrochemical measurements. We show that the composition of the binary solvent controls the average particle size and its distribution. The unit cell parameter of the Pt3Co alloy decreases nonlinearly with decreasing particle size. The ORR activity of the prepared Pt-Co/C catalysts in H2SO4 solution enhances with decreasing particle size and unit cell parameter as well as with narrowing of the particle size distribution. Corrosion treatment of the synthesized Pt-Co/C materials causes an increase of ca. 1 nm in average particles size...
While extensive literature shows Pt alloy catalysts are a more active substitute for pure Pt catalys...
Nanosize carbon-supported Pt1-xCox (x = 0.2, 0.3, and 0.45) electrocatalysts were prepared by a chem...
In order to reduce the precious metal loading without sacrificing activity and stability, a new meth...
International audiencePt-Co/C electrocatalysts with Pt loadings near 30 wt. % prepared by the impreg...
Carbon supported Pt-Co (3:1 atom ratio) catalysts were prepared in both acid and alkaline aqueous me...
312-320Primarily, oxygen reduction reaction (ORR) kinetics at fuel cell cathode is slower on pure pl...
The oxygen reduction reaction (ORR) was investigated on carbon-supported Pt-Co nanoparticle electroc...
Pt3Cox/C electrocatalysts for use as cathodes in proton exchange membrane fuel cells are fabricated ...
International audienceCarbon-supported Pt catalysts prepared by the impregnation method in water - d...
A scientific review addresses the current development of size-dependent, shape-selected, and composi...
Polymer electrolyte fuel cells have shown great potential in providing clean energy with no emission...
Carbon supported Pt (Pt/C) with various average particle sizes ranging from sub 3 nm to 6.5 nm were ...
Colloidal suspensions of almost spherical and crystalline Pt nanoparticles between 1.6 and 2.6 nm in...
Carbon-supported bimetallic Pt-Co cathode catalysts have been previously identified as higher activi...
Pt-Ru/C nanocatalysts were prepared by a microemulsion method using different values of water/surfac...
While extensive literature shows Pt alloy catalysts are a more active substitute for pure Pt catalys...
Nanosize carbon-supported Pt1-xCox (x = 0.2, 0.3, and 0.45) electrocatalysts were prepared by a chem...
In order to reduce the precious metal loading without sacrificing activity and stability, a new meth...
International audiencePt-Co/C electrocatalysts with Pt loadings near 30 wt. % prepared by the impreg...
Carbon supported Pt-Co (3:1 atom ratio) catalysts were prepared in both acid and alkaline aqueous me...
312-320Primarily, oxygen reduction reaction (ORR) kinetics at fuel cell cathode is slower on pure pl...
The oxygen reduction reaction (ORR) was investigated on carbon-supported Pt-Co nanoparticle electroc...
Pt3Cox/C electrocatalysts for use as cathodes in proton exchange membrane fuel cells are fabricated ...
International audienceCarbon-supported Pt catalysts prepared by the impregnation method in water - d...
A scientific review addresses the current development of size-dependent, shape-selected, and composi...
Polymer electrolyte fuel cells have shown great potential in providing clean energy with no emission...
Carbon supported Pt (Pt/C) with various average particle sizes ranging from sub 3 nm to 6.5 nm were ...
Colloidal suspensions of almost spherical and crystalline Pt nanoparticles between 1.6 and 2.6 nm in...
Carbon-supported bimetallic Pt-Co cathode catalysts have been previously identified as higher activi...
Pt-Ru/C nanocatalysts were prepared by a microemulsion method using different values of water/surfac...
While extensive literature shows Pt alloy catalysts are a more active substitute for pure Pt catalys...
Nanosize carbon-supported Pt1-xCox (x = 0.2, 0.3, and 0.45) electrocatalysts were prepared by a chem...
In order to reduce the precious metal loading without sacrificing activity and stability, a new meth...