Ordered intermetallic phases of Pt with several transition metals have been prepared and their electrocatalytic properties studied. In light of these tests it is proposed that these catalysts could be used as electrodes in fuel cells, as they combine an excellent capacity to adsorb organic fuels at the Pt sites with low susceptibility to being poisoned by intermediates and reaction products at the transition-metal sites. An experimental procedure used to obtain the four intermetallic phases Pt-M (M = Mn, Pb, Sb and Sn) is described. The phases thus produced were characterized by X-ray diffraction, scanning electron microscopy with surface analysis by energy-dispersive X-ray spectrometry, scanning tunneling microscopy and X-ray photoelectron...
This work aimed to develop plurimetallic electrocatalysts composed of Pt, Ru, Ni, and Sn supported o...
The oxygen reduction reaction (ORR) is a performance-dictating cathodic reaction in polymer electrol...
Different Pt/Me/Pc and Pt/Me/Complex catalysts (with Me=Metal: Co, Ni, and Pc=phthalocyanine) were s...
Ordered intermetallic phases of Pt with several transition metals have been prepared and their elect...
In the search of better catalysts for fuel cells, synthesis of several intermetallic compounds and a...
Ordered intermetallic compounds of Pt-based metal electrocatalysts have been recently proposed as ve...
In order to improve catalytic activity and stability, alloying Pt with a non-noble metal has proved ...
Development of novel metal catalysts with high catalytic activity and selectivity is one of the most...
Intermetallics phases along Mo-Pt phase diagram have been investigated as cathode materials for the ...
1 Abstract The main sources of energy in the world are unrenewable sources. However, its reserves sh...
The intermetallic phases along the Pt-Mo phase diagram, singly or in combination with specific ionic...
Platinum electrocatalysts are important for a number of low and zero-emission energy technologies, i...
The Bönnemann method was chosen to synthesize carbon-supported Pt-Ru-Mo electrocatalyst powders, as ...
Ordered intermetallic alloys have attracted extensive attention as advanced electrocatalysts for pol...
As part of collaborative efforts to develop new materials for use in polymer electrolyte membrane fu...
This work aimed to develop plurimetallic electrocatalysts composed of Pt, Ru, Ni, and Sn supported o...
The oxygen reduction reaction (ORR) is a performance-dictating cathodic reaction in polymer electrol...
Different Pt/Me/Pc and Pt/Me/Complex catalysts (with Me=Metal: Co, Ni, and Pc=phthalocyanine) were s...
Ordered intermetallic phases of Pt with several transition metals have been prepared and their elect...
In the search of better catalysts for fuel cells, synthesis of several intermetallic compounds and a...
Ordered intermetallic compounds of Pt-based metal electrocatalysts have been recently proposed as ve...
In order to improve catalytic activity and stability, alloying Pt with a non-noble metal has proved ...
Development of novel metal catalysts with high catalytic activity and selectivity is one of the most...
Intermetallics phases along Mo-Pt phase diagram have been investigated as cathode materials for the ...
1 Abstract The main sources of energy in the world are unrenewable sources. However, its reserves sh...
The intermetallic phases along the Pt-Mo phase diagram, singly or in combination with specific ionic...
Platinum electrocatalysts are important for a number of low and zero-emission energy technologies, i...
The Bönnemann method was chosen to synthesize carbon-supported Pt-Ru-Mo electrocatalyst powders, as ...
Ordered intermetallic alloys have attracted extensive attention as advanced electrocatalysts for pol...
As part of collaborative efforts to develop new materials for use in polymer electrolyte membrane fu...
This work aimed to develop plurimetallic electrocatalysts composed of Pt, Ru, Ni, and Sn supported o...
The oxygen reduction reaction (ORR) is a performance-dictating cathodic reaction in polymer electrol...
Different Pt/Me/Pc and Pt/Me/Complex catalysts (with Me=Metal: Co, Ni, and Pc=phthalocyanine) were s...