Stability of a Fe-Rich Cathode Catalyst in an Anion Exchange Membrane Fuel Cell

Lin Xie, D. Kirk
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Abstract

Fe-rich alloys have been widely studied as catalyst materials for the cathodic oxygen reduction reaction (ORR) in hydrogen fuel cells, and many have shown high activities. The stability of Fe-rich catalysts has also been researched, and some studies have shown promising results using an accelerated stress test (AST), which uses a potential cycling method. However, for commercial fuel cell applications, such as standby power systems, the catalyst has to tolerate a high potential for a long period, which can not be represented by the AST test. In this paper, the cathode stability of a Fe-rich catalyst was studied using a standby cell potential of 0.9V, a potential shown to be challenging for the competing Pt catalysts. After 1500 hrs of testing, significant morphology changes of both the tested cathode and anode were found due to a Fe leaching process. Other alloy materials, including Ni, Cr, and Mn, were also found leached out along with the Fe species from the catalyst framework. The results are a cautionary note for using Fe based catalysts for AEMFC cathodes.
富铁阴极催化剂在阴离子交换膜燃料电池中的稳定性研究
富铁合金作为氢燃料电池阴极氧还原反应(ORR)的催化剂材料得到了广泛的研究,许多富铁合金表现出较高的活性。富铁催化剂的稳定性也得到了研究,一些研究使用加速应力测试(AST)显示了有希望的结果,该测试使用潜在循环方法。然而,对于商业燃料电池应用,如备用电源系统,催化剂必须长时间承受高电位,这是AST测试无法代表的。本文研究了一种富铁催化剂在0.9V的待机电位下的阴极稳定性,这一电位对Pt催化剂来说是一个挑战。经过1500小时的测试,由于铁浸出过程,被测阴极和阳极的形貌都发生了明显的变化。其他合金材料,包括Ni、Cr和Mn,也被发现与Fe一起从催化剂框架中浸出。该结果对使用铁基催化剂制备AEMFC阴极具有警示意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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