It was reported for the first time that the electrocatalytic activity of the Carbon-supported Pd-Ir (Pd-Ir/C) catalyst with the suitable atomic ratio of Pd and Ir for the oxidation of formic acid in the direct formic acid fuel cell (DFAFC) is better than that of the Carbon-supported Pd (Pd/C) catalyst, although Ir has no electrocatalytic activity for the oxidation of formic acid. The potential of the anodic peak of formic acid at the Pd-Ir/C catalyst electrode with the atomic ratio of Pd and Ir = 5:1 is 50 mV more negative than that and the peak current density is 13% higher than that at the Pd/C catalyst electrode
In this work carbon supported Pd nanoparticles were prepared and used as electrocatalysts for formic...
Performance characterization of direct formic acid fuel cell using porous carbon-supported palladium...
Direct formic acid fuel cells (DFAFC) are promising alternatives to hydrogen proton exchange membran...
In this paper, it is reported for the first time that a carbon-supported Pd-P (Pd-P/C) catalyst for ...
The electrocatalytic activity of the Pd anodic catalyst in direct formic acid fuel cell(DFAFC) for t...
The electrocatalytic activity of the Pd anodic catalyst in direct formic acid fuel cell(DFAFC) for t...
The poor electrocatalytic stability of the Pd/C catalyst and the catalytic decomposition of formic a...
The electrocatalytic performances of a Vulcan XC-72 carbon black supported Pd (Pd/XC) catalyst and a...
The electrocatalytic performance and formic acid tolerance ability of the Vulcan XC-72 carbon black ...
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...
Direct formic acid fuel cell (DFAFC) with Pd-based catalyst anode is a promising energy converter to...
The development of active anode catalysts for the oxidation of formic acid is of great importance in...
In this paper, carbon-supported Ir-Co, Ir-Ni, and Ir-Cr catalysts (Ir-Co/C, Ir-Ni/C, and Ir-Cr/C) we...
The development of active anode catalysts for the oxidation of formic acid is of great importance in...
In this work carbon supported Pd nanoparticles were prepared and used as electrocatalysts for formic...
Performance characterization of direct formic acid fuel cell using porous carbon-supported palladium...
Direct formic acid fuel cells (DFAFC) are promising alternatives to hydrogen proton exchange membran...
In this paper, it is reported for the first time that a carbon-supported Pd-P (Pd-P/C) catalyst for ...
The electrocatalytic activity of the Pd anodic catalyst in direct formic acid fuel cell(DFAFC) for t...
The electrocatalytic activity of the Pd anodic catalyst in direct formic acid fuel cell(DFAFC) for t...
The poor electrocatalytic stability of the Pd/C catalyst and the catalytic decomposition of formic a...
The electrocatalytic performances of a Vulcan XC-72 carbon black supported Pd (Pd/XC) catalyst and a...
The electrocatalytic performance and formic acid tolerance ability of the Vulcan XC-72 carbon black ...
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...
Direct formic acid fuel cell (DFAFC) with Pd-based catalyst anode is a promising energy converter to...
The development of active anode catalysts for the oxidation of formic acid is of great importance in...
In this paper, carbon-supported Ir-Co, Ir-Ni, and Ir-Cr catalysts (Ir-Co/C, Ir-Ni/C, and Ir-Cr/C) we...
The development of active anode catalysts for the oxidation of formic acid is of great importance in...
In this work carbon supported Pd nanoparticles were prepared and used as electrocatalysts for formic...
Performance characterization of direct formic acid fuel cell using porous carbon-supported palladium...
Direct formic acid fuel cells (DFAFC) are promising alternatives to hydrogen proton exchange membran...