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The effect of Nafion content in a graphitized carbon nanofiber-based anode for the direct methanol fuel cell

机译:Nafion含量对直接甲醇燃料电池的石墨化碳纳米纤维基阳极的影响

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摘要

The performance and stability of a direct methanol fuel cell (DMFC) with membrane electrode assemblies (MEA) using different Nafion® contents (30, 50 and 70 wt% or MEA30, MEA50 and MEA70, respectively) and graphitized carbon nanofiber (GNF) supported PtRu catalyst at the anode was investigated by a constant current measurement of 9 days (230 h) in a DMFC and characterization with various techniques before and after this measurement. Of the pristine MEAs, MEA50 reached the highest power and current densities. During the 9-day measurement at a constant current, the performance of MEA30 decreased the most (−124 μV h−1), while the MEA50 was almost stable (−11 μV h−1) and performance of MEA70 improved (+115 μV h−1). After the measurement, the MEA50 remained the best MEA in terms of performance. The optimum anode Nafion content for commercial Vulcan carbon black supported PtRu catalysts is between 20 and 40 wt%, so the GNF-supported catalyst requires more Nafion to reach its peak power. This difference is explainedby the tubular geometry of the catalyst support, which requires more Nafion to form a penetrating proton conductive network than the spherical Vulcan. Mass transfer limitations are mitigated by the porous 3D structure of the GNF catalyst layer and possible changes in the compact Nafion filled catalyst layers during constant current production.
机译:使用不同含量的Nafion®(分别为30、50和70 wt%或MEA30,MEA50和MEA70)和支持石墨化碳纳米纤维(GNF)的带有膜电极组件(MEA)的直接甲醇燃料电池(DMFC)的性能和稳定性通过在DMFC中进行9天(230小时)的恒定电流测量研究了阳极处的PtRu催化剂,并在测量之前和之后使用了各种技术对其进行了表征。在原始的MEA中,MEA50达到了最高的功率和电流密度。在恒定电流下进行的9天测量期间,MEA30的性能下降幅度最大(-124μVh-1),而MEA50几乎稳定(-11μVh-1),而MEA70的性能有所改善(+115μV) h-1)。测量后,就性能而言,MEA50仍然是最佳的MEA。商用Vulcan炭黑负载的PtRu催化剂的最佳阳极Nafion含量在20至40 wt%之间,因此GNF负载的催化剂需要更多的Nafion才能达到其峰值功率。这种差异由催化剂载体的管状几何形状解释,与球形Vulcan相比,它需要更多的Nafion才能形成渗透性的质子传导网络。通过GNF催化剂层的多孔3D结构以及在恒定电流生产过程中紧凑的Nafion填充催化剂层中可能发生的变化,减轻了质量传递限制。

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