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The MEAs were evaluated for durability against fuel starvation.
The electrical resistance of the MEAs drastically decreased for AB contents greater than 37 vol%.
The MEAs are fabricated in-house by a combination of a decal and direct coating method.
Two combinations of Nafion® polymer electrolyte membranes (PEMs) were used in the MEAs.
The MEAs thus fabricated show high Pt utilization efficiency and power density.
In the CV and EIS analyses, the ESA and cell resistance of the MEAs with Pt/CNF were nearly unchanged.
The different degradation behaviors of the MEAs are monitored and compared to the normal constant voltage mode of 0.6 V.
Electrochemical surface areas that were measured with complete cells using cyclic voltammetry increased with increasing ionomer content for the MEAs with supported catalyst, but varied with a maximum value for the MEAs with black catalyst.
A bi-exponential model with random coefficients is introduced to represent the nonlinear deterioration path of the MEAs.
The high-strain-rate response of the MEAs was characterized using hat-shaped specimens in Hopkinson-bar experiments.
The cell testing of the MEAs agreed well with the relative humidity conductivity results obtained for the membranes.
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