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A comprehensive study on the effect of Ru addition to Pt electrodes for direct ethanol fuel cell

机译:Pt电极中Ru的添加对直接乙醇燃料电池的影响的综合研究

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The electro-oxidation of ethanol was studied over nanosized Pt and different compositions of PtRu catalysts synthesized by the borohydride reduction method. Physicochemical characterizations of the catalyst material were made by X-ray diffraction (XRD), scanning electron microscopy (SEM) coupled with EDX analysis and transmission electron microscopy (TEM). XRD patterns showed that Ru induces a contraction of the Pt lattice. EDX provided the composition of binary catalysts while TEM images indicated uniform distribution of discrete nanoparticle of the catalysts with narrow range. The electro-catalytic activities of the materials towards ethanol oxidation were investigated through electrochemical techniques, viz. cyclic voltammetry (CV), potentiodynamic polarization, chronoamperometry (CA) and electrochemical impedance spectroscopy (EIS) at room temperature. The onset potential of ethanol electro-oxidation is lowered on bimetallic PtRu catalysts compared to that on Pt alone. Of the investigated catalyst compositions the one with the highest electrocatalytic activity was found to be Pt82Ru18. This enhancement towards ethanol oxidation is explained on the basis of a structural effect and modified bi-functional mechanism.
机译:研究了乙醇在纳米级Pt和硼氢化物还原法合成的不同组成的PtRu催化剂上的电氧化。通过X射线衍射(XRD),扫描电子显微镜(SEM),EDX分析和透射电子显微镜(TEM)对催化剂材料进行了物理化学表征。 XRD图谱表明Ru诱导了Pt晶格的收缩。 EDX提供了二元催化剂的组成,而TEM图像显示了离散纳米颗粒在窄范围内的均匀分布。通过电化学技术研究了材料对乙醇氧化的电催化活性。循环伏安法(CV),电位动力学极化,计时电流法(CA)和室温下的电化学阻抗谱(EIS)。与仅使用Pt相比,双金属PtRu催化剂上乙醇电氧化的起始电势降低。在所研究的催化剂组合物中,具有最高电催化活性的是Pt 82 Ru 18 。基于结构效应和修饰的双功能机理解释了这种对乙醇氧化的增强。

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