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Durability test with fuel starvation using a Pt/CNF catalyst in PEMFC

机译:在PEMFC中使用Pt / CNF催化剂对燃料不足进行耐久性测试

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摘要

In this study, a catalyst was synthesized on carbon nanofibers [CNFs] with a herringbone-type morphology. The Pt/CNF catalyst exhibited low hydrophilicity, low surface area, high dispersion, and high graphitic behavior on physical analysis. Electrodes (5 cm2) were prepared by a spray method, and the durability of the Pt/CNF was evaluated by fuel starvation. The performance was compared with a commercial catalyst before and after accelerated tests. The fuel starvation caused carbon corrosion with a reverse voltage drop. The polarization curve, EIS, and cyclic voltammetry were analyzed in order to characterize the electrochemical properties of the Pt/CNF. The performance of a membrane electrode assembly fabricated from the Pt/CNF was maintained, and the electrochemical surface area and cell resistance showed the same trend. Therefore, CNFs are expected to be a good support in polymer electrolyte membrane fuel cells.
机译:在这项研究中,在人字形形态的碳纳米纤维[CNFs]上合成了催化剂。在物理分析中,Pt / CNF催化剂显示出低亲水性,低表面积,高分散性和高石墨行为。通过喷雾法制备电极(5cm 2 ),并通过燃料不足来评估Pt / CNF的耐久性。在加速测试之前和之后,将该性能与商用催化剂进行了比较。燃料不足会导致碳腐蚀,并产生反向电压降。分析了极化曲线,EIS和循环伏安法,以表征Pt / CNF的电化学性能。保持了由Pt / CNF制成的膜电极组件的性能,并且电化学表面积和电池电阻显示出相同的趋势。因此,预期CNF是聚合物电解质膜燃料电池中的良好载体。

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