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And the performances of electro-catalysts were evaluated and compared as an electrode of PEMFCs by single cell test.
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The optimal performance of the MEA was obtained with the 10 wt.% of silica in the composite catalyst by single cell tests under both high and low humidity conditions.
The electrochemical performance of Pt catalyst electrodes was characterized by electrochemical impedance spectroscopy and the single cell test at 30 75 °C.
The electrochemical properties of the membranes were examined by using electrochemical impedance spectroscopy (EIS) and single cell test.
As a result, an increase in the power density in the single cell test was achieved by using the Pt ATO catalyst as cathode catalyst for the direct methanol fuel cell (DMFC) rather than by using the Pt black catalyst.
The CO tolerance of the composite catalyst of each design was judged by the cell performance obtained through a single cell test using H2/CO gases of various CO concentrations and compared to that of the PtRu/C catalyst.
The activities of the catalysts towards oxygen reduction reaction (ORR) were investigated by electrochemical measurements and single cell tests, respectively.
Its catalytic activity, reaction reversibility and charge discharge performance are evaluated by half cell and single cell tests, while its crystal structure, particle size and particle distribution are measured by XRD and TEM.
These effects of ionomer in the catalyst layer with carbon-supported catalysts on the cathode performance were investigated by electrochemical techniques and single cell testing in order to improve the power output of DMFC.
The catalytic activity of prepared catalysts was investigated by single cell polarization test and in situ cyclic voltammetry (CV).
Single cell tests were performed under various methanol concentrations and cell temperatures.
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