离聚物
氧气输送
氧气
电解质
Nafion公司
限制电流
化学
阴极
溶解
催化作用
极限氧浓度
扩散
水运
化学工程
材料科学
聚合物
电化学
电极
复合材料
热力学
水流
环境工程
有机化学
共聚物
物理化学
物理
工程类
作者
Yoshitaka Ono,Atsushi Ohma,Kazuhiko Shinohara,Kazuyoshi Fushinobu
摘要
Local oxygen transport resistances around the surface of Pt particles were examined by analyzing varying equivalent weight (EW) of ionomer in cathode catalyst layers (CCLs) of polymer electrolyte fuel cells. Traditional limiting current method was performed to estimate total oxygen transport resistances in CCLs. The local oxygen transport resistances were determined analytically from the total oxygen transport resistances in CCLs with different Pt loadings. Analysis applying a macro homogeneous model in CCLs revealed that lowering ionomer EW in CCLs caused significant increase in not only the oxygen transport resistance in thickness direction of a CCL (), but also the local oxygen transport resistance (). Additionally, the obtained oxygen transport resistances were reexamined by simple dissolution/diffusion models considering the results of measurement of water sorption isotherm. Results revealed were within the expected range. However, experimental values were much higher than values calculated by use of both the oxygen transport property of Nafion membrane and bulk PTFE/water approximated model. This indicates that unconsidered parameters related to interfacial phenomena of ionomer such as the coverage of absorbed water on the surface, oxygen dissolution rate in ionomer or blockage of Pt surface by sulfonic acid group should be employed.
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