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Facile solvothermal synthesis of Pt-Cu nanocatalyst with improved electrocatalytic activity toward methanol oxidation

机译:溶剂热合成Pt-Cu纳米催化剂具有改善的甲醇氧化电催化活性

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A binary metal nanocatalyst of platinum and copper was synthesized using a facile solvothermal process (polyol method). The synthesized catalyst was characterized using energy dispersive X-ray spectroscopy (EDS), X-ray diffraction (XRD) and transmission electron microscopy (TEM). The electrochemical performance of the synthesized carbon supported binary metal catalyst, Pt–Cu/С, toward methanol oxidation reaction was checked and then compared with the commercial Pt/C (ETEK) catalyst, using cyclic voltammetry and chronoamperometric techniques. The Pt–Cu/C catalyst was found to be cubic in shape with indentations on the particle surface, having platinum to copper atomic composition of 4:1, i.e., (Pt4Cu). The peak current density for Pt–Cu/C catalyst recorded as 2.3 mA cm-2 at 0.7 V (vs Ag/AgCl) and 50 mV s-1, was two times higher than the current density of the commercially available Pt/C catalyst (1.16 mA cm-2 at 0.76 V). Moreover, the Pt–Cu/C catalyst was found to be more durable than the commercial Pt/C catalyst, as the Pt–Cu/C retained 89 % of its initial current density, while the commercial Pt/C catalyst retained 65 % of its initial current density after 300 potential cycles.
机译:使用简便的溶剂热法(多元醇法)合成了铂和铜的二元金属纳米催化剂。使用能量色散X射线光谱法(EDS),X射线衍射(XRD)和透射电子显微镜(TEM)对合成的催化剂进行表征。检查了合成的碳载二元金属催化剂Pt-Cu /С对甲醇氧化反应的电化学性能,然后使用循环伏安法和计时安培技术与市售Pt / C(ETEK)催化剂进行了比较。发现Pt-Cu / C催化剂为立方形状,在颗粒表面有凹痕,铂与铜的原子组成为4:1,即(Pt4Cu)。在0.7 V(vs Ag / AgCl)和50 mV s-1时记录的Pt-Cu / C催化剂的峰值电流密度为2.3 mA cm-2,比市售Pt / C催化剂的电流密度高两倍(0.76 V时为1.16 mA cm-2)。此外,发现Pt-Cu / C催化剂比市售Pt / C催化剂更耐用,因为Pt-Cu / C保留了其初始电流密度的89%,而市售Pt / C催化剂却保留了65%的初始电流密度。经过300个电位循环后的初始电流密度。

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