We propose a novel, facile synthesis route to produce stable platinum-based polymer electrolyte membrane fuel cell catalysts supported on nitrogen-doped carbon. Platinum nanoparticles were decorated on polyaniline (PANI), a nitrogen-containing polymer, before its subsequent carbonization at 750 °C under nitrogen atmosphere. Thus, nitrogen-doped carbon-supported platinum catalysts were produced with homogeneously distributed small metal particles, which are otherwise difficult to obtain. Most remarkably the platinum nanoparticles did not grow significantly during the carbonization step. In contrast, commercially available standard catalysts on carbon materials subjected to the same heat treatment showed severe particle growth. In accordance ...
Nitrogen-enriched porous carbons have been discussed as supports for Pt nanoparticle catalysts deplo...
Demand for energy continues to increase, and without alternatives to fossil fuel combustion the effe...
Polymer electrolyte membrane (PEM) fuel cells have been viewed as promising power source candidates ...
We propose a novel, facile synthesis route to produce stable platinum-based polymer electrolyte memb...
The surface of nitrogen containing carbonized nanostructured polyaniline (Carb-nanoPANI) was modifie...
The high price of fuel cells is mainly attributed to the low catalytic efficiency and short working ...
Novel synthesis of a Pt catalyst encapsulated in a N-containing carbon layer for use in a polymer el...
Platinum and platinum alloys supported on carbon materials are the state of the art electrocatalysts...
Nanostructured platinum catalysts for a high-temperature proton-exchange membrane (PEM) fuel cell ba...
Platinum and platinum alloys supported on carbon materials are the state of the art electrocatalysts...
Platinum and platinum alloys supported on carbon materials are the state of the art electrocatalysts...
Nitrogen-enriched porous carbons have been discussed as supports for Pt nanoparticle catalysts deplo...
[[abstract]]"Abstract The highly dispersed platinum/carbon (Pt/C) catalysts with excellent activity ...
Insufficient catalytic activity and durability are key barriers to the commercial deployment of low ...
Philosophiae Doctor - PhDCatalysts play an essential role in nearly every chemical production proces...
Nitrogen-enriched porous carbons have been discussed as supports for Pt nanoparticle catalysts deplo...
Demand for energy continues to increase, and without alternatives to fossil fuel combustion the effe...
Polymer electrolyte membrane (PEM) fuel cells have been viewed as promising power source candidates ...
We propose a novel, facile synthesis route to produce stable platinum-based polymer electrolyte memb...
The surface of nitrogen containing carbonized nanostructured polyaniline (Carb-nanoPANI) was modifie...
The high price of fuel cells is mainly attributed to the low catalytic efficiency and short working ...
Novel synthesis of a Pt catalyst encapsulated in a N-containing carbon layer for use in a polymer el...
Platinum and platinum alloys supported on carbon materials are the state of the art electrocatalysts...
Nanostructured platinum catalysts for a high-temperature proton-exchange membrane (PEM) fuel cell ba...
Platinum and platinum alloys supported on carbon materials are the state of the art electrocatalysts...
Platinum and platinum alloys supported on carbon materials are the state of the art electrocatalysts...
Nitrogen-enriched porous carbons have been discussed as supports for Pt nanoparticle catalysts deplo...
[[abstract]]"Abstract The highly dispersed platinum/carbon (Pt/C) catalysts with excellent activity ...
Insufficient catalytic activity and durability are key barriers to the commercial deployment of low ...
Philosophiae Doctor - PhDCatalysts play an essential role in nearly every chemical production proces...
Nitrogen-enriched porous carbons have been discussed as supports for Pt nanoparticle catalysts deplo...
Demand for energy continues to increase, and without alternatives to fossil fuel combustion the effe...
Polymer electrolyte membrane (PEM) fuel cells have been viewed as promising power source candidates ...