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Characterization and Electrocatalytic Properties of Titanium-Based Ru0.3Co0.7−xCexMixed Oxide Electrodes for Oxygen Evolution in Alkaline Solution

机译:钛氢钛含量的氧化钛氧化氧化物电极的表征及电催化性能

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摘要

Ti-supported RuO2-Co3O4-CeO2 (Ru0.3Co0.7−xCex oxide, 0≤x≤0.7) electrodes were prepared by sol-gel process. The phase structure, surface morphology, and microstructure of the oxide layer were characterized by X-ray diffraction (XRD) and scanning electron microscopy (SEM). Electrocatalytic activity and oxygen evolution reaction (OER) kinetics on these electrodes in 1.0 mol⋅dm−3 KOH solution were studied by recording open-circuit potential, cyclic voltammetry, and polarisation curves. The results showed that the appropriate content of CeO2 could reduce the grain size and increase active surface area. The electrocatalytic activity shows a strong dependence on the CeO2 content in the film. Catalytic performance of mixed oxide electrodes with 40 mol % CeO2 was the best, with the greatest voltammetric charge, 86.23 mC⋅cm−2, and the smallest apparent activation energy for OER at 0.60 V was 22.76 kJ⋅mol−1.
机译:通过溶胶 - 凝胶工艺制备Ti载体的RuO2-Co3O4-CeO 2(Ru0.3CO 0.7-XCEx氧化物,0≤x≤0.7)。通过X射线衍射(XRD)和扫描电子显微镜(SEM)表征氧化物层的相结构,表面形态和微观结构。通过记录开路电位,循环伏安法和偏振曲线研究了1.0mol = DM-3 KOH溶液中这些电极上的电催化活性和氧气进化反应(Oer)动力学。结果表明,CEO2的适当含量可以降低晶粒尺寸并增加活性表面积。电催化活动显示出对薄膜中的CEO2含量的强烈依赖。用40mol%CeO2的混合氧化物电极的催化性能是最佳的,最大的伏安电荷,86.23mc⋅cm-2,oer的最小明显的活化能量为0.60 v为22.76kj⋅mol-1。

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