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Methanol oxidation on Ru/Pd(poly) in alkaline solution

机译:碱溶液中甲醇氧化(碱溶液)

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摘要

Polycrystalline Pd electrode, Pd(poly), is modified by Ru nanoislands using spontaneous deposition method. Coverage of Pd(poly) electrode with the deposited Ru are approx. 20, 30 and 50% as estimated from phase atomic force microscopy images. The oxidation state of Pd substrate and the deposited Ru is determined by X-ray spectroscopy (XPS). Electrocatalytic activity of obtained Ru/Pd(poly) bimetallic electrodes is tested towards methanol oxidation in alkaline medium. Cyclic voltammetry and chronoamperometry experiments show the enhanced activity of Ru/Pd(poly) electrodes towards methanol electrooxidation with respect to bare Pd(poly). This is explained by the presence of Ru islands, which provided RuOH and Pd-RuOH sites, necessary for the oxidation of CO as the main intermediate during the oxidation of methanol at lower potentials. 30% Ru/Pd(poly) is the most active of all examined electrodes.
机译:使用自发性沉积法通过Ru Nanoislands改性多晶Pd电极Pd(Poly)。 Pd(多)电极与沉积的Ru的覆盖率约为。 从相原子力显微镜图像估计,20,30和50%。 PD衬底和沉积的Ru的氧化状态由X射线光谱(XPS)确定。 获得的Ru / Pd(Poly)双金属电极的电催化活性在碱性培养基中测试甲醇氧化。 循环伏安法和计时率实验显示Ru / Pd(多种)电极相对于裸Pd(Poly)的Ru / Pd(Poly)电极对甲醇电氧化的增强活性。 这是通过提供Ru岛的存在,其提供RuOH和Pd-ruOH位点,在较低电位下氧化甲醇期间的CO作为主要中间体所必需的。 30%Ru / Pd(Poly)是所有检查电极最活跃的。

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