A series of ruthenium modified carbon supported catalysts have been prepared by surface organometallic chemistry (SOMC) with the following nominal RuPt surface ratios, (14)RuPt/C, (12)RuPt/C, (34)RuPt/C and (11)RuPt/C. The catalysts were characterised using X-ray diffraction (XRD), extended X-ray absorption fine structure (EXAFS), cyclic voltammetry (CV), and half-cell polarisation studies. The XRD measurements showed that a bulk PtRu alloy was not formed following SOMC modification. However, the EXAFS measurements indicated that a surface alloy is formed upon electrochemical reduction of the Ru modified catalysts. The CV studies show that the electrooxidation of CO on the Ru modified Pt/C catalysts occurs at lower potentials than on the un...
A set of bimetallic Pt-Ru catalysts prepared by co-impregnation of carbon black with ruthenium(III) ...
International audienceRu-modified Pt nanoparticle surfaces were prepared using Ru electrochemical or...
International audienceRu-modified Pt nanoparticle surfaces were prepared using Ru electrochemical or...
A series of ruthenium modified carbon supported catalysts have been prepared by surface organometall...
Ruthenium modified carbon supported platinum catalysts have been shown to have a similar activity to...
Ruthenium modified carbon supported platinum catalysts have been shown to have a similar activity to...
Ruthenium modified carbon supported platinum catalysts have been shown to have a similar activity to...
Ruthenium modified carbon supported platinum catalysts have been shown to have a similar activity to...
Ruthenium modified carbon supported platinum catalysts have been shown to have a similar activity to...
Ruthenium modified carbon supported platinum catalysts have been shown to have a similar activity to...
A series of carbon supported PtRu bimetallic catalysts with varying Pt:Ru ratio were prepared and ch...
Carbon-supported Pt–Ru (1 : 1) catalysts were synthesized from aqueous solutions of Pt IV and Ru IV ...
Carbon-supported Pt–Ru (1 : 1) catalysts were synthesized from aqueous solutions of Pt IV and Ru IV ...
Pt-Ru electrocatalysts are commonly applied anode materials for low-temperature fuel cells, as the a...
Pt-Ru electrocatalysts are commonly applied anode materials for low-temperature fuel cells, as the a...
A set of bimetallic Pt-Ru catalysts prepared by co-impregnation of carbon black with ruthenium(III) ...
International audienceRu-modified Pt nanoparticle surfaces were prepared using Ru electrochemical or...
International audienceRu-modified Pt nanoparticle surfaces were prepared using Ru electrochemical or...
A series of ruthenium modified carbon supported catalysts have been prepared by surface organometall...
Ruthenium modified carbon supported platinum catalysts have been shown to have a similar activity to...
Ruthenium modified carbon supported platinum catalysts have been shown to have a similar activity to...
Ruthenium modified carbon supported platinum catalysts have been shown to have a similar activity to...
Ruthenium modified carbon supported platinum catalysts have been shown to have a similar activity to...
Ruthenium modified carbon supported platinum catalysts have been shown to have a similar activity to...
Ruthenium modified carbon supported platinum catalysts have been shown to have a similar activity to...
A series of carbon supported PtRu bimetallic catalysts with varying Pt:Ru ratio were prepared and ch...
Carbon-supported Pt–Ru (1 : 1) catalysts were synthesized from aqueous solutions of Pt IV and Ru IV ...
Carbon-supported Pt–Ru (1 : 1) catalysts were synthesized from aqueous solutions of Pt IV and Ru IV ...
Pt-Ru electrocatalysts are commonly applied anode materials for low-temperature fuel cells, as the a...
Pt-Ru electrocatalysts are commonly applied anode materials for low-temperature fuel cells, as the a...
A set of bimetallic Pt-Ru catalysts prepared by co-impregnation of carbon black with ruthenium(III) ...
International audienceRu-modified Pt nanoparticle surfaces were prepared using Ru electrochemical or...
International audienceRu-modified Pt nanoparticle surfaces were prepared using Ru electrochemical or...