Pd nanoparticles supported on Samarium oxide modified carbon (SmOx/C) hybrid support for the electrooxidation of formic acid is studied. The morphology, composition and electrocatalytic properties are investigated by physical characterization and electrochemical measurements. The results demonstrate that Pd/SmOx-C catalyst has excellent catalytic activity and stability for formic acid oxidation. The current density is about 1.32 times that of the Pd/C catalyst. The electronic effect and oxygen-containing species provided by SmOx accelerate the rate of formic acid electrooxidation. When integrated into the anode of a direct formic acid fuel cell, the maximum power density of 167 mW cm (2) is obtained, which is about 1.4 times that of a comme...
Effect of several usually used carbon materials on Pd catalyst for formic acid electrooxidation reac...
The structural design of nanosized electrocatalysts is extremely important for cathodic oxygen reduc...
In this work, we describe the use of several Pd-based catalysts for promotion of the oxidation of fo...
Pd nanoparticles supported on Samarium oxide modified carbon (SmOx/C) hybrid support for the electro...
The PdCeOx/C catalyst was prepared and studied as anodic catalyst for formic acid electrooxidation. ...
It is found that the electrocatalytic activity and stability of Pd/C nanocatalyst for formic acid el...
The development of facile, surfactant-free strategy for the scale-up production Of catalysts with su...
The preparation of highly dispersed precious metal catalysts is an important subject for fuel cell a...
In this work carbon supported Pd nanoparticles were prepared and used as electrocatalysts for formic...
This study addresses formic acid (FA) electro-oxidation (FAO) at a binary catalyst composed of palla...
Pd catalysts supported on carbon black and Ti4O7 were prepared and used as electrocatalysts for form...
Direct liquid-fed fuel cell is a promising power device for applications, such as consumer electroni...
AbstractThe current study proposes a novel binary catalyst system (composed of metal/metal oxide nan...
AbstractThe electro-oxidation of formic acid (an essential reaction in direct formic acid fuel cells...
In order to understand the reason for the poor electrocatalytic stability of the Pd/C catalyst for f...
Effect of several usually used carbon materials on Pd catalyst for formic acid electrooxidation reac...
The structural design of nanosized electrocatalysts is extremely important for cathodic oxygen reduc...
In this work, we describe the use of several Pd-based catalysts for promotion of the oxidation of fo...
Pd nanoparticles supported on Samarium oxide modified carbon (SmOx/C) hybrid support for the electro...
The PdCeOx/C catalyst was prepared and studied as anodic catalyst for formic acid electrooxidation. ...
It is found that the electrocatalytic activity and stability of Pd/C nanocatalyst for formic acid el...
The development of facile, surfactant-free strategy for the scale-up production Of catalysts with su...
The preparation of highly dispersed precious metal catalysts is an important subject for fuel cell a...
In this work carbon supported Pd nanoparticles were prepared and used as electrocatalysts for formic...
This study addresses formic acid (FA) electro-oxidation (FAO) at a binary catalyst composed of palla...
Pd catalysts supported on carbon black and Ti4O7 were prepared and used as electrocatalysts for form...
Direct liquid-fed fuel cell is a promising power device for applications, such as consumer electroni...
AbstractThe current study proposes a novel binary catalyst system (composed of metal/metal oxide nan...
AbstractThe electro-oxidation of formic acid (an essential reaction in direct formic acid fuel cells...
In order to understand the reason for the poor electrocatalytic stability of the Pd/C catalyst for f...
Effect of several usually used carbon materials on Pd catalyst for formic acid electrooxidation reac...
The structural design of nanosized electrocatalysts is extremely important for cathodic oxygen reduc...
In this work, we describe the use of several Pd-based catalysts for promotion of the oxidation of fo...