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Eliminating micro-porous layer from gas diffusion electrode for use in high temperature polymer electrolyte membrane fuel cell

机译:从气体扩散电极中消除微孔层,以用于高温聚合物电解质膜燃料电池

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摘要

In this work, we report a simple strategy to improve the performance of high temperature polymer electrolyte membrane fuel cell (HT-PEMFC) by eliminating the micro-porous layer (MPL) from its gas diffusion electrodes (GDEs). Due to the absence of liquid water and the general use of high amount of catalyst, the MPL in a HT-PEMFC system works limitedly. Contrarily, the elimination of the MPL leads to an interlaced micropore/macropore composited structure in the catalyst layer (CL), which favors gas transport and catalyst utilization, resulting in a greatly improved single cell performance. At the normal working voltage (0.6 V), the current density of the GDE eliminated MPL reaches 0.29 A cm−2, and a maximum power density of 0.54 W cm−2 at 0.36 V is obtained, which are comparable to the best results yet reported for the HT-PEMFCs with similar Pt loading and operated using air. Furthermore, the MPL-free GDE maintains an excellent durability during a preliminary 1400 h HT-PEMFC operation, owing to its structure advantages, indicating the feasibility of this electrode for practical applications.
机译:在这项工作中,我们报告了一种通过从气体扩散电极(GDE)中去除微孔层(MPL)来提高高温聚合物电解质膜燃料电池(HT-PEMFC)性能的简单策略。由于没有液态水并且通常使用大量的催化剂,因此HT-PEMFC系统中的MPL的工作受到限制。相反,MPL的消除导致催化剂层(CL)中的交错的微孔/大孔复合结构,这有利于气体传输和催化剂的利用,从而大大改善了单电池性能。在正常工作电压(0.6 V)下,经GDE消除的MPL的电流密度达到0.29 A cm-2,并且在0.36 V时获得的最大功率密度为0.54 W cm-2,与目前的最佳结果相当报道了HT-PEMFC具有类似的Pt负载并且使用空气进行操作。此外,由于其结构优势,不含MPL的GDE在预备的1400 h HT-PEMFC操作过程中保持了极好的耐久性,表明该电极在实际应用中的可行性。

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