离聚物
阴极
质子交换膜燃料电池
Nafion公司
电极
分析化学(期刊)
材料科学
化学
欧姆接触
复合材料
图层(电子)
催化作用
电化学
色谱法
物理化学
生物化学
聚合物
共聚物
作者
Yuxiu Liu,Michael W. Murphy,Daniel R. Baker,Wenbin Gu,Chunxin Ji,Jacob Jorné,Hubert Andreas Gasteiger
摘要
The electrode in a proton exchange membrane (PEM) fuel cell is composed of a carbon-supported Pt catalyst coated with a thin layer of ionomer. At the cathode, where the oxygen reduction reaction occurs, protons arrive at the catalyst sites through the thin ionomer layer. The resistance to this protonic conduction through the entire thickness of the electrode can cause significant voltage losses, especially under dry conditions. The in the cathode with various ionomer/carbon weight ratios (I/C ratios) was characterized in a cell using ac impedance under various operating conditions. AC impedance data were analyzed by fitting , cathode capacitance , and high frequency resistance to a simplified transmission-line model with the assumption that the proton resistance and the pseudocapacitance are distributed uniformly throughout the electrode. The proton conductivity in the given types of electrode starts to drop at I/C ratios of approximately or an ionomer volume fraction of in the electrode. The comparison to fuel cell performance shows that the ohmic loss in the electrode can be quantified by this technique. The cell voltage corrected for ohmic losses is independent of relative humidity (RH) and the electrode's I/C ratio, which indicates that electrode proton resistivity (ratio of over cathode thickness) is indeed an intrinsic RH-dependent electrode property. The effect of RH on the ORR kinetics was further identified to be rather small for the range of RH studied ( RH).
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