The high cost of the catalyst material is a large obstacle for the commercialization of Direct Methanol Fuel Cells. In present work, the non-noble metal Fe was added to the conventional Pt/C catalyst in order to lowering the catalyst cost without sacrificing the catalytic performance. A chemically dealloying procedure was adopted to leach out the surface iron atoms and thereby increasing the stability of the catalyst. Through these procedures, the PtFe bulk-surface differential nano-catalyst was obtained. The shift in diffraction angles according to XRD spectra confirms the formation of the alloy structure between Pt and Fe. TEM results indicate that the chemically dealloyed PtFe/C nanoparticles are uniformly-dispersed with optimized averag...
The active phase requirement for production of methanol from 3H$\sb2$/CO at 31.6 atm to 1 atm pressu...
High surface area carbon-supported Pt and bimetallic Pt–Fe catalysts are investigated for the oxygen...
To achieve fuel cell commercialization, the performance improvement and cost reduction of catalysts ...
A series of carbon supported Pt-Fe bimetallic nanocatalysts (Pt-Fe/C) with varying Pt:Fe ratio were ...
A series of carbon supported Pt-Fe bimetallic nanocatalysts (Pt-Fe/C) with varying Pt:Fe ratio were ...
In this work, physical and catalytic properties of Pt-Fe/C nanocatalysts of nominal compositions Pt;...
SSCI-VIDE+ECI2D+JRD:GBEInternational audienceThis study reports the electrocatalytic activity of all...
[[abstract]]The finding of new metal alloyed nanocrystals (NCs) with high catalytic activity and low...
A study of the effect of iron concentration on the electrocatalysis of oxygen reduction reaction (OR...
A novel PtFe@Pt core-shell nanostructure with a PtFe bimetallic core and a nanodendrite Pt shell was...
The aim of this work is primarily to rationalize the effect of surface composition on electrocatalyt...
Supported bimetallic PtFe catalyst is one of the most promising candidates for preferential CO oxida...
CHARACTERIZATION OF NOVEL ALUMINA-SUPPORTED PtFe ALLOY NANOPARTICLES BY MÖSSBAUER SPECTROSCOPY ...
Crossover of methanol from the anode to the cathode through the polymer-electrolyte membrane in soli...
The current challenge in catalyst development is to produce highly active and economical catalysts. ...
The active phase requirement for production of methanol from 3H$\sb2$/CO at 31.6 atm to 1 atm pressu...
High surface area carbon-supported Pt and bimetallic Pt–Fe catalysts are investigated for the oxygen...
To achieve fuel cell commercialization, the performance improvement and cost reduction of catalysts ...
A series of carbon supported Pt-Fe bimetallic nanocatalysts (Pt-Fe/C) with varying Pt:Fe ratio were ...
A series of carbon supported Pt-Fe bimetallic nanocatalysts (Pt-Fe/C) with varying Pt:Fe ratio were ...
In this work, physical and catalytic properties of Pt-Fe/C nanocatalysts of nominal compositions Pt;...
SSCI-VIDE+ECI2D+JRD:GBEInternational audienceThis study reports the electrocatalytic activity of all...
[[abstract]]The finding of new metal alloyed nanocrystals (NCs) with high catalytic activity and low...
A study of the effect of iron concentration on the electrocatalysis of oxygen reduction reaction (OR...
A novel PtFe@Pt core-shell nanostructure with a PtFe bimetallic core and a nanodendrite Pt shell was...
The aim of this work is primarily to rationalize the effect of surface composition on electrocatalyt...
Supported bimetallic PtFe catalyst is one of the most promising candidates for preferential CO oxida...
CHARACTERIZATION OF NOVEL ALUMINA-SUPPORTED PtFe ALLOY NANOPARTICLES BY MÖSSBAUER SPECTROSCOPY ...
Crossover of methanol from the anode to the cathode through the polymer-electrolyte membrane in soli...
The current challenge in catalyst development is to produce highly active and economical catalysts. ...
The active phase requirement for production of methanol from 3H$\sb2$/CO at 31.6 atm to 1 atm pressu...
High surface area carbon-supported Pt and bimetallic Pt–Fe catalysts are investigated for the oxygen...
To achieve fuel cell commercialization, the performance improvement and cost reduction of catalysts ...