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首页> 外文期刊>Hwahak konghak >Synthesis of Mesoporous Pt-Au Alloy Electrode by Electrodeposition Method for Direct Methanol Fuel Cell
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Synthesis of Mesoporous Pt-Au Alloy Electrode by Electrodeposition Method for Direct Methanol Fuel Cell

机译:直接甲醇燃料电池电沉积法合成介孔Pt-Au合金电极

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Mesoporous Pt-Au alloy films were successfully fabricated on ITO-coated glass by electrodeposition method using tri-blockcopolymer (P123) as a templating agent. The electrolyte consisted of 10 mM hydrogen hexachlo-roplatinate (H2PtCl6), 10 mM hydrogen tetrachloroaurate (HAuCl4), and proper amount of P123. For comparison, control samples were electrodeposited without HAuCl4 and P123. Film composition was determined by EDS(Energy Dispersive X-ray Spectroscopy), and the mesoporous structure was confirmed by TEM(Transmission Electron Microscopy). SEM(Scanning Electron Microscopy) was utilized to examine surface morphology, and it was observed that the addition of P123 affected the particle growth, resulting in the significant change of surface morphology. Methanol oxidation and CO oxidation were carried out to investigate electrocatalytic activities of synthesized samples. It was observed that the catalytic activity was strongly dependent on the film compositions. Compared with nonporous electrode prepared without P123 templating, mesoporous films prepared with P123 templating showed much higher catalytic activities and stability for both methanol oxidation and CO oxidation. These enhanced electrocatalytic activities were due to the high surface area and facilitated charge transfer of mesoporous films.
机译:以三嵌段共聚物(P123)为模板剂,通过电沉积法在ITO涂层玻璃上成功制备了介孔Pt-Au合金膜。电解液由10 mM六氯铂酸氢盐(H2PtCl6),10 mM四氯金酸氢盐(HAuCl4)和适量的P123组成。为了进行比较,将没有HAuCl4和P123的对照样品进行电沉积。通过EDS(能量分散X射线光谱法)确定膜组成,并通过TEM(透射电子显微镜)确认中孔结构。利用SEM(扫描电子显微镜)检查表面形态,并且观察到P123的添加影响颗粒生长,导致表面形态的显着变化。进行了甲醇氧化和一氧化碳氧化,以研究合成样品的电催化活性。观察到催化活性强烈依赖于膜组成。与不使用P123模板制备的无孔电极相比,用P123模板制备的中孔膜表现出更高的催化活性和对甲醇氧化和CO氧化的稳定性。这些增强的电催化活性归因于中孔膜的高表面积和促进的电荷转移。

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