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首页> 外文期刊>Electrochimica Acta >Fe-based catalysts for the reduction of oxygen in polymer electrolyte membrane fuel cell conditions: determination of the amount of peroxide released during electroreduction and its influence on the stability of the catalysts
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Fe-based catalysts for the reduction of oxygen in polymer electrolyte membrane fuel cell conditions: determination of the amount of peroxide released during electroreduction and its influence on the stability of the catalysts

机译:用于还原聚合物电解质膜燃料电池中氧气的铁基催化剂:测定电还原过程中释放的过氧化物的量及其对催化剂稳定性的影响

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摘要

Fe-based catalysts have been prepared by pyrolyzing ClFeTMPP (Cl-Fe tetramethoxyphenyl porphyrin) or Fe acetate adsorbed on PTCDA (perylene tetracarboxylic dianhydride) or on prepyrolyzed PTCDA (p-PTCDA). The catalysts which were already well characterized in terms of active FeN{sub}4/C and FeN{sub}2/C catalytic sites (J. Phys. Chem. B 106 (2002) 8705) are now characterized by RRDE experiments to determine the values of the apparent number of electron transferred (n) and the percentage of peroxide (%H{sub}2O{sub}2) released during the oxygen reduction reaction (ORR) in H{sub}2SO{sub}4 at pH 1. A direct correlation is found between the relative abundance of the FeN{sub}2/C catalytic site in these materials, their catalytic activity and the value of n. The correlation is inverse for %H{sub}2O{sub}2. The best catalysts at their maximum catalytic activity are characterized by n > 3.9 and %H{sub}2O{sub}2 <5%, equivalent to a value of %H{sub}2O{sub}2 released by a 2 wt.% Pt/C catalyst. It is shown that even low peroxide levels of the order of 5 vol% in H{sub}2SO{sub}4 are able to decompose the catalytic sites releasing iron ions in the H{sub}2SO{sub}4 solution. The loss of catalytic activity correlates directly with the loss of iron ions by these catalysts. All the catalysts have been tested at the cathode of single membrane electrode assemblies (MEAs). The slow decrease in performance in fuel cell stability tests is interpreted as the result of the detrimental effect that has H{sub}2O{sub}2, released during ORR, on the chemical integrity of the nonnoble metal catalytic sites at work at the fuel cell cathodes.
机译:通过热解ClFeTMPP(Cl-Fe四甲氧基苯基卟啉)或吸附在PTCDA(per四羧酸二酐)或预热解PTCDA(p-PTCDA)上的乙酸铁制备铁基催化剂。现在已经通过RRDE实验表征了已经在活性FeN {sub} 4 / C和FeN {sub} 2 / C催化位点方面进行了很好表征的催化剂(J. Phys。Chem。B 106(2002)8705),以确定pH下H {sub} 2SO {sub} 4中的氧还原反应(ORR)过程中释放的表观电子数(n)和过氧化物百分比(%H {sub} 2O {sub} 2)的值1.在这些材料中FeN {sub} 2 / C催化位点的相对丰度,它们的催化活性和n值之间存在直接相关性。 %H {sub} 2O {sub} 2的相关关系是相反的。最好的催化剂在其最大催化活性下的特征是n> 3.9,%H {sub} 2O {sub} 2 <5%,相当于2 wt。%释放的%H {sub} 2O {sub} 2的值。 %Pt / C催化剂。结果表明,即使在H {sub} 2SO {sub} 4中较低的过氧化物水平(约5体积%)也能够分解催化位点,从而在H {sub} 2SO {sub} 4溶液中释放铁离子。催化活性的损失与这些催化剂的铁离子的损失直接相关。所有催化剂均已在单膜电极组件(MEA)的阴极进行了测试。燃料电池稳定性测试中性能的缓慢下降是由于在ORR期间释放H {sub} 2O {sub} 2对燃料上工作的非贵金属催化部位的化学完整性的有害影响的结果细胞阴极。

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