In the present study, a method based on transmission-line mode for a porous electrode was used to measure the ionic resistance of the anode catalyst layer under in situ fuel cell operation condition. The influence of Nafion content and catalyst loading in the anode catalyst layer on the methanol electro-oxidation and direct methanol fuel cell (DMFC) performance based on unsupported Pt-Ru black was investigated by using the AC impedance method. The optimal Nafion content was found to be 15 wt% at 75 degrees C. The optimal Pt-Ru loading is related to the operating temperature, for example, about 2.0 mg/cm(2) for 75-90 degrees C, 3.0 mg/cm2 for 50 degrees C. Over these values, the cell performance decreased due to the increases in ohmic and ma...
The performance of a single cell direct methanol fuel cell (DMFC) is optimized by evaluating the eff...
Most of the R&D on Direct Methanol Alkaline Fuel Cell (DMAFC) concentrates on electrode catalyst...
The performance of a direct methanol fuel cell MEA degraded during an operational period of more tha...
Effect of anode diffusion layer over the performance of the liquid feed direct methanol fuel cell ha...
Reduction of the high amount of expensive noble metals in the catalyst layers of direct methanol fue...
In this work the influence of the ionomer content in the electrodes on DMFC operation is studied. Na...
DFAFC has extensive hydrophilic nature and will cause problems in a limited mass transport in the an...
For the optimization of membrane-electrode-assemblies (MEAs) and of the operation pro¬cedure a detai...
We report an in situ measurement of the oxygen diffusion coefficient D ox in the cathode catalyst...
The purpose of this work is to investigate the effect of membrane thickness on direct methanol fuel ...
Direct methanol fuel cells (DMFC´s) are promising candidates as portable power sources due to their ...
The steady-state performance of a small scale (cross sectional electrode area 9cm liquid feed direct...
PtRu catalysts were prepared by electrochemical deposition on C-Nafion supports sprayed on stainless...
Catalyst utilization studies are very important in PEM and Direct Methanol Fuel cell systems. This a...
Analysis of PEM Fuel Cell performance was conducted by implementing two in-situ non destructive elec...
The performance of a single cell direct methanol fuel cell (DMFC) is optimized by evaluating the eff...
Most of the R&D on Direct Methanol Alkaline Fuel Cell (DMAFC) concentrates on electrode catalyst...
The performance of a direct methanol fuel cell MEA degraded during an operational period of more tha...
Effect of anode diffusion layer over the performance of the liquid feed direct methanol fuel cell ha...
Reduction of the high amount of expensive noble metals in the catalyst layers of direct methanol fue...
In this work the influence of the ionomer content in the electrodes on DMFC operation is studied. Na...
DFAFC has extensive hydrophilic nature and will cause problems in a limited mass transport in the an...
For the optimization of membrane-electrode-assemblies (MEAs) and of the operation pro¬cedure a detai...
We report an in situ measurement of the oxygen diffusion coefficient D ox in the cathode catalyst...
The purpose of this work is to investigate the effect of membrane thickness on direct methanol fuel ...
Direct methanol fuel cells (DMFC´s) are promising candidates as portable power sources due to their ...
The steady-state performance of a small scale (cross sectional electrode area 9cm liquid feed direct...
PtRu catalysts were prepared by electrochemical deposition on C-Nafion supports sprayed on stainless...
Catalyst utilization studies are very important in PEM and Direct Methanol Fuel cell systems. This a...
Analysis of PEM Fuel Cell performance was conducted by implementing two in-situ non destructive elec...
The performance of a single cell direct methanol fuel cell (DMFC) is optimized by evaluating the eff...
Most of the R&D on Direct Methanol Alkaline Fuel Cell (DMAFC) concentrates on electrode catalyst...
The performance of a direct methanol fuel cell MEA degraded during an operational period of more tha...