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Investigation of platinum utilization and morphology in catalyst layer of polymer electrolyte fuel cells

机译:Investigation of platinum utilization and morphology in catalyst layer of polymer electrolyte fuel cells

摘要

Platinum utilization in the gas-diffusion catalyst layer and thin-film catalyst layer is investigated. The morphology of PTFE and Nafion in a simulated catalyst layer is examined by scanning electronmicroscopy (SEM) and transmission electron microscopy (TEM). The results show that the platinum utilization of the thin-film catalyst layer containing only Pt/C and Nafion is 45.4%. The low utilization is attributed to the fact that the electron conduction of many catalyst particles is impaired by some thick Nafion layers or clumps. For the gas-diffusion (E-TEK) electrode, the platinum utilization is mainly affected by the proton conduction provided by Nafion. The blocking effect of PTFE on the active sites is not serious. When the electrode is sufficiently impregnated with Nafion by an immersion method, the platinum utilization can reach 77.8%. Transmission electron micrographs reveal that although some thick Nafion layers and clumps are observed in the Pt/C + Nafion layer, the distribution of Nafion in the catalyst layer is basically uniform. The melted PTFE disperses in the catalyst layer very uniformly. No large PTFE clumps or wide net-like structure is observed. The reactant gas may have to diffuse evenly in the catalyst layer. (C) 1999 Elsevier Science S.A. All rights reserved.
机译:研究了在气体扩散催化剂层和薄膜催化剂层中铂的利用率。通过扫描电子显微镜(SEM)和透射电子显微镜(TEM)检查模拟催化剂层中PTFE和Nafion的形态。结果表明,仅包含Pt / C和Nafion的薄膜催化剂层的铂利用率为45.4%。利用率低归因于以下事实:许多厚的Nafion层或团块削弱了许多催化剂颗粒的电子传导。对于气体扩散(E-TEK)电极,铂的利用率主要受Nafion提供的质子传导的影响。 PTFE对活性部位的阻断作用并不严重。当通过浸没法将电极充分浸入Nafion时,铂的利用率可以达到77.8%。透射电子显微照片显示,尽管在Pt / C + Nafion层中观察到一些较厚的Nafion层和团块,但Nafion在催化剂层中的分布基本均匀。熔融的PTFE非常均匀地分散在催化剂层中。没有观察到大的PTFE团块或宽的网状结构。反应气体可能必须在催化剂层中均匀扩散。 (C)1999 Elsevier Science S.A.保留所有权利。

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