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首页> 外文期刊>International journal of hydrogen energy >Study of the oxygen reduction and hydrogen oxidation reactions on RhIrRu-based catalysts
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Study of the oxygen reduction and hydrogen oxidation reactions on RhIrRu-based catalysts

机译:RhIrRu基催化剂上的氧还原和氢氧化反应的研究

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In this work, we have used a mixture of three carbonyl cluster compounds [Rh-6(CO)(16), Ir-4(CO)(12) and Ru-3(CO)(12)] in order to obtain two new RhIrRu-based catalytic materials by pyrolysis in different atmospheres: neutral (N-2) and reductive (H-2). The products were structurally characterized by different analytical techniques. The results show that the hydrogen atmosphere favors the decarbonylation process of the precursors. The trimetallic materials were also electrochemically characterized by rotating disk electrode measurements. These studies indicate that the new catalysts can perform the oxygen reduction reaction (ORR) even in the presence of methanol, and the hydrogen oxidation reaction (HOR) even in the presence of carbon monoxide. The polarization curves are similar in the absence and presence of such proton exchange membrane (PEM) fuel cell contaminants, an important advantage over commercial platinum catalysts, which are easily deactivated by small concentrations of these species. The kinetic parameters of the catalysts, such as Tafel slope (b), exchange current density (j(o)) and charge transfer coefficient (alpha), were calculated for both reactions, as well. The results show that the new materials are good potential candidates to be evaluated as both cathodes and anodes in PEM fuel cells. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项工作中,我们使用了三种羰基簇化合物[Rh-6(CO)(16),Ir-4(CO)(12)和Ru-3(CO)(12)]的混合物以获得两种通过在不同气氛中热解的新型RhIrRu基催化材料:中性(N-2)和还原性(H-2)。通过不同的分析技术对产物进行结构表征。结果表明,氢气氛有利于前体的脱羰过程。还通过转盘电极测量对三金属材料进行电化学表征。这些研究表明,即使在甲醇存在下,新催化剂也可以进行氧还原反应(ORR),甚至在一氧化碳存在下也可以进行氢氧化反应(HOR)。在不存在和存在这种质子交换膜(PEM)燃料电池污染物的情况下,极化曲线相似,这是相对于商用铂催化剂的重要优势,后者很容易因这些物质的低浓度而失活。还针对两个反应计算了催化剂的动力学参数,例如塔菲尔斜率(b),交换电流密度(j(o))和电荷转移系数(α)。结果表明,新材料是PEM燃料电池正极和负极的良好潜在候选者。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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