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Co-catalytic effect of Ni in the methanol electro-oxidation on Pt-Ru/C catalyst for direct methanol fuel cell

机译:Ni在甲醇电氧化中对直接甲醇燃料电池Pt-Ru / C催化剂的共催化作用

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摘要

This research is aimed to improve the utilization and activity of anodic catalysts, thus to lower the contents of noble metals loading in anodes for methanol electro-oxidation. The direct methanol fuel cell anodic catalysts, Pt-Ru-Ni/C and Pt-Ru/C, were prepared by chemical reduction method. Their performances were tested by using a glassy carbon working electrode through cyclic voltammetric curves, chronoamperometric curves and half-cell measurement in a solution of 0.5mol/L CH{sub}3OH and 0.5mol/L H{sub}2SO{sub}4, The composition of the Pt-Ru-Ni and Pt-Ru surface particles were determined by EDAX analysis. The particle size and lattice parameter of the catalysts were determined by means of X-ray diffraction (XRD). XRD analysis showed that both of the catalysts exhibited face-centered cubic structures and had smaller lattice parameters than Pt-alone catalyst. Their sizes are small, about 4.5 nm. No significant differences in the methanol electro-oxidation on both electrodes were found by using cyclic voltammetry, especially regarding the onset potential for methanol electro-oxidation. The electrochemically active-specific areas of the Pt-Ru-Ni/C and Pt-Ru/C catalysts are almost the same. But, the catalytic activity of the Pt-Ru-Ni/C catalyst is higher for methanol electro-oxidation than that of the Pt-Ru/C catalyst. Its tolerance performance to CO formed as one of the intermediates of methanol electro-oxidation is better than that of the Pt-Ru/C catalyst.
机译:这项研究的目的是提高阳极催化剂的利用率和活性,从而降低阳极中用于甲醇电氧化的贵金属含量。采用化学还原法制备了直接甲醇燃料电池阳极催化剂Pt-Ru-Ni / C和Pt-Ru / C。通过使用玻璃碳工作电极通过循环伏安曲线,计时安培曲线和在0.5mol / L CH {sub} 3OH和0.5mol / LH {sub} 2SO {sub} 4的溶液中进行半电池测量来测试其性能,通过EDAX分析来确定Pt-Ru-Ni和Pt-Ru表面颗粒的组成。催化剂的粒度和晶格参数通过X射线衍射(XRD)确定。 XRD分析表明,两种催化剂均表现出面心立方结构,并且其晶格参数比单独使用Pt的催化剂小。它们的尺寸很小,约为4.5 nm。使用循环伏安法未发现两个电极上的甲醇电氧化有显着差异,特别是关于甲醇电氧化的起始电位。 Pt-Ru-Ni / C和Pt-Ru / C催化剂的电化学活性比面积几乎相同。但是,Pt-Ru-Ni / C催化剂对于甲醇电氧化的催化活性高于Pt-Ru / C催化剂。它对作为甲醇电氧化中间体之一的CO的耐受性能优于Pt-Ru / C催化剂。

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