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Comparison of CO on Carbon-supported Pt Catalysts Prepared by CO Gas Bubbling and Methanol Dehydrogenation

机译:CO鼓泡和甲醇脱氢制碳载Pt催化剂上CO的比较

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CO adsorbates on the surface of Pt supported on carbon catalysts (Pt/C) were investigated by CO stripping voltammetry.Three types of CO adsorbed samples were prepared:by methanol dehydrogenation only (CO_m),by CO gas bubbling only (CO_g),and by methanol dehydrogenation followed by CO gas bubbling (CO_(m+g)).Our coverage data show that CO gas can be adsorbed on Pt/C catalyst already saturated with CO adsorbates by methanol dehydrogenation.The CO_(m+g) sample showed the properties of both CO_m as well as CO_g samples in terms of the potential although the CO adsorbed by dehydrogenation was completely exchanged with CO in the electrolyte solution.Therefore,the oxidation pathways of CO on Pt/C were observed to depend on the initial adsorption conditions of CO more strongly than on the CO coverage.Our results imply that an initial CO poisoning condition in fuel cell operation is an important factor to determine the difficulty in removing the adsorbed CO and confirm that the properties of the adsorbed CO do not change even with chemical replacement with CO in different conditions.In addition,our results indicate a low CO surface mobility on the Pt in an electrolyte solution.
机译:通过CO溶出伏安法研究了负载在碳催化剂(Pt / C)上的Pt表面上的CO吸附物。制备了三种CO吸附样品:仅通过甲醇脱氢(CO_m),仅通过CO鼓泡(CO_g)和我们的覆盖范围数据表明,通过甲醇脱氢,CO气体可以吸附在已经被CO吸附物饱和的Pt / C催化剂上.CO_(m + g)样品显示尽管通过脱氢吸附的CO与电解质溶液中的CO完全交换,但CO_m和CO_g样品的电势性质都没有变化。因此,观察到CO在Pt / C上的氧化途径取决于初始吸附结果表明,燃料电池运行中的初始CO中毒条件是确定去除吸附的CO的难度并确定其性质的重要因素。即使在不同条件下用CO进行化学置换,吸附的CO也不会发生变化。此外,我们的结果表明,电解液中Pt上的CO表面迁移率较低。

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