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Effect of the amount of reducing agent on surface structures, electrochemical activity and stability of PtRu catalysts

机译:还原剂用量对PtRu催化剂表面结构,电化学活性和稳定性的影响

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摘要

The effect of the amount of reducing agent used in the synthesis of PtRu alloy catalysts on their surface structure was investigated, and the prepared catalysts were characterized using transmission electron microscopy, X-ray diffraction, X-ray photoelectron spectroscopy, cyclic voltammetry, and potential cycling. The alloying degree of the catalysts was essentially the same for all of the catalysts studied, despite the use of different amounts of reducing agent. Varying the amount of reducing agent resulted in changes in the surface composition of the catalysts, wherein the surfaces were found to be composed of several PtRu domains that differed in local inhomogeneity and hence showed differences in activity for CO_(ad) oxidation. The highest activity for methanol oxidation was obtained when there was moderate Ru enrichment of the catalyst. The electrochemical stability of the catalysts was also investigated via potential cycling in a methanol-containing electrolyte solution. The electrochemical stability under methanol oxidation was enhanced by Ru-enrichment at the catalyst surface, because the Ru-rich surface had sufficient Ru atoms near the Pt atoms to act as a bifunctional catalyst, even though the Ru atoms were leached out by potential cycling. The most Ru-rich catalyst exhibited an increase in methanol oxidation current in the middle of potential cycling whereas the other catalysts showed a monotonic decrease.
机译:研究了合成PtRu合金催化剂中还原剂用量对其表面结构的影响,并利用透射电子显微镜,X射线衍射,X射线光电子能谱,循环伏安法和电势对制备的催化剂进行了表征。循环。尽管使用了不同量的还原剂,但对于所有研究的催化剂,催化剂的合金化程度基本相同。还原剂的量的变化导致催化剂的表面组成的变化,其中发现表面由几个PtRu结构域组成,这些PtRu结构域在局部不均匀性上不同,因此显示出对CO_(ad)氧化的活性不同。当催化剂适度Ru富集时,可获得最高的甲醇氧化活性。还通过在含甲醇的电解质溶液中进行电势循环研究了催化剂的电化学稳定性。甲醇氧化下的电化学稳定性通过在催化剂表面富集Ru而增强,因为即使Ru原子通过电势循环浸出,富Ru的表面在Pt原子附近具有足够的Ru原子充当双功能催化剂。最富Ru的催化剂在电位循环的中间表现出甲醇氧化电流的增加,而其他催化剂则表现出单调的下降。

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