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Effect of PtRu alloying degree on electrocatalytic activities and stabilities

机译:PtRu合金化程度对电催化活性和稳定性的影响

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摘要

The PtRu alloying degree was controlled by mixing various amounts of water in the solvent while the nominal Pt/Ru ratio was remained at the value of one, and the relationship betweenthe alloying degree and electrochemical activities was examined in this study. X-ray diffraction analysis showed that the fraction of the alloyed Ru ranged from approximately 18% for 100% water solvent to 86% for 0% water solvent. In X-ray photoelectron spectroscopy (XPS), Pt and Ru metallic components increased with the PtRu alloying degree. Electrochemical activities for CO oxidation and methanol oxidation were enhanced as the PtRu alloying degree became higher. Electrochemical stability was also investigated via potential cycling in a methanol-contained electrolyte solution. After the potential cycling process, the catalysts were analyzed by transmission electron microscopy, XPS, XPS element mapping. Possible reasons for the difference in the electrochemical stability of the catalysts were discussed.
机译:通过在溶剂中混合各种量的水来控制PtRu合金化程度,同时使标称Pt / Ru比保持在1的水平,并研究了合金化程度与电化学活性之间的关系。 X射线衍射分析表明,合金Ru的分数在100%水溶剂为约18%至0%水溶剂为86%的范围内。在X射线光电子能谱(XPS)中,Pt和Ru金属成分随PtRu合金化程度的增加而增加。随着PtRu合金化程度的提高,CO氧化和甲醇氧化的电化学活性增强。还通过在含甲醇的电解质溶液中进行电势循环研究了电化学稳定性。在潜在的循环过程之后,通过透射电子显微镜,XPS,XPS元素图谱分析催化剂。讨论了催化剂电化学稳定性差异的可能原因。

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