PdPt bimetallic nanoparticles on carbon-based supports functioning as advanced electrode materials have attracted attention due to their low content of noble metals and high catalytic activity for fuel cell reactions. Glassy carbon (GC)-supported Pt and PdPt nanoparticles, as promising catalysts for the oxygen reduction reaction (ORR), were prepared by the electrochemical deposition of Pt and the subsequent spontaneous deposition of Pd. The obtained electrodes were examined using X-ray Photoelectron Spectroscopy (XPS), Atomic Force Microscopy (AFM), and electroanalytical techniques. An XPS analysis of the PdPt/GC with the highest ORR performance revealed that the stoichiometric ratio of Pd: Pt was 1:2, and that both Pt and Pd were partially...
Platinum (Pt) nanoparticles are the widely used electro-catalyst due to its high catalytic activity ...
Fuel cells are clean and efficient power sources which can convert chemical energy of hydrogen and o...
Pt@Pd/C nanoparticle was prepared by the galvanic displacement reaction between Pt4þ and Pd. A simp...
PdPt bimetallic nanoparticles on carbon-based supports functioning as advanced electrode materials h...
ORR (Oxygen Reduction Reaction) has been studied on Pt-Pd/C catalyst both experimentally and theoret...
Palladium-based catalysts for electrochemical reduction of oxygen have received increasing attention...
Background: Fuel cells have a very low emission of greenhouse gases such as CO2, SOx etc with high e...
ORR (Oxygen Reduction Reaction) has been studied on Pt-Pd/C catalyst both experimentally and theoret...
ORR (Oxygen Reduction Reaction) has been studied on Pt-Pd/C catalyst both experimentally and theoret...
Cataloged from PDF version of article.Nano-sized Pt-Pd/C and Pt-Co/C electrocatalysts have been synt...
The oxygen reduction reaction (ORR) was studied on carbon-supported cubic palladium nanoparticles of...
In this work, PdPt alloy nanocubes with different metal ratios were synthesised in the presence of p...
Nano-sized Pt-Pd/C and Pt-Co/C electrocatalysts have been synthesized and characterized by an alcoho...
Carbon-supported Pd nanocubes with the size of 30, 10 and 7 nm were prepared and their electrocataly...
Platinum (Pt) nanoparticles are the widely used electro-catalyst due to its high catalytic activity ...
Platinum (Pt) nanoparticles are the widely used electro-catalyst due to its high catalytic activity ...
Fuel cells are clean and efficient power sources which can convert chemical energy of hydrogen and o...
Pt@Pd/C nanoparticle was prepared by the galvanic displacement reaction between Pt4þ and Pd. A simp...
PdPt bimetallic nanoparticles on carbon-based supports functioning as advanced electrode materials h...
ORR (Oxygen Reduction Reaction) has been studied on Pt-Pd/C catalyst both experimentally and theoret...
Palladium-based catalysts for electrochemical reduction of oxygen have received increasing attention...
Background: Fuel cells have a very low emission of greenhouse gases such as CO2, SOx etc with high e...
ORR (Oxygen Reduction Reaction) has been studied on Pt-Pd/C catalyst both experimentally and theoret...
ORR (Oxygen Reduction Reaction) has been studied on Pt-Pd/C catalyst both experimentally and theoret...
Cataloged from PDF version of article.Nano-sized Pt-Pd/C and Pt-Co/C electrocatalysts have been synt...
The oxygen reduction reaction (ORR) was studied on carbon-supported cubic palladium nanoparticles of...
In this work, PdPt alloy nanocubes with different metal ratios were synthesised in the presence of p...
Nano-sized Pt-Pd/C and Pt-Co/C electrocatalysts have been synthesized and characterized by an alcoho...
Carbon-supported Pd nanocubes with the size of 30, 10 and 7 nm were prepared and their electrocataly...
Platinum (Pt) nanoparticles are the widely used electro-catalyst due to its high catalytic activity ...
Platinum (Pt) nanoparticles are the widely used electro-catalyst due to its high catalytic activity ...
Fuel cells are clean and efficient power sources which can convert chemical energy of hydrogen and o...
Pt@Pd/C nanoparticle was prepared by the galvanic displacement reaction between Pt4þ and Pd. A simp...