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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >New-Concept CO-Tolerant Anode Catalysts Using a Rh Porphyrin-Deposited PtRu/C
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New-Concept CO-Tolerant Anode Catalysts Using a Rh Porphyrin-Deposited PtRu/C

机译:使用Rh卟啉沉积的PtRu / C的新概念耐CO阳极催化剂

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CO poisoning of the Pt-based anodes (PtRu) of stationary proton exchange membrane fuel cells remains a severe problem for their realization. We tried to counteract this problem using a CO oxidation electrocatalyst. Rh porphyrins, which can catalyze electrochemical CO oxidation in low potential regions, were adsorbed on a carbon-supported PtRu catalyst (PtRu/C) to increase its CO tolerance. The combined electrocatalysts (Rh(porphyrin)-PtRu/C) exhibited significantly higher activity toward CO(2%)-contaminated H2 than the PtRu/C alone; the onset potential for H2 oxidation reaches 0.2 V (vs a reversible hydrogen electrode) on the combined catalyst. In contrast, the composite of PtRu black and Rh(porphyrin) scarcely exhibited CO tolerance. This suggests that the enhancement of CO tolerance in Rh(porphyrin)-PtRu/C is mainly caused by Rh porphyrins on carbon. The significance of Rh porphyrins on carbon was shown by the findings that a mixed catalyst composed of carbon-supported Rh(porphyrin) (Rh(porphyrin)/C) and PtRu/C gave high oxidation activity toward CO(2%)/H2. Rh porphyrin on carbon would decrease the CO concentration around PtRu particles and thus reduce the CO poisoning of PtRu catalysts.
机译:固定质子交换膜燃料电池基于Pt的阳极(PtRu)的CO中毒仍然是实现它们的严重问题。我们尝试使用CO氧化电催化剂来解决此问题。可以在低电势区域催化电化学CO氧化的Rh卟啉被吸附在碳载PtRu催化剂(PtRu / C)上,以提高其CO耐受性。组合的电催化剂(Rh(卟啉)-PtRu / C)对CO(2%)污染的H2的活性明显高于单独的PtRu / C。在组合催化剂上,H2氧化的起始电位达到0.2 V(相对于可逆氢电极)。相反,PtRu黑和Rh(卟啉)的复合物几乎不表现出CO耐受性。这表明Rh(卟啉)-PtRu / C中CO耐受性的增强主要是由碳上的Rh卟啉引起的。研究发现,由碳负载的Rh(卟啉)(Rh(卟啉)/ C)和PtRu / C组成的混合催化剂具有高的对CO(2%)/ H2的氧化活性。碳上的Rh卟啉将降低PtRu颗粒周围的CO浓度,从而减少PtRu催化剂的CO中毒。

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