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Oxidized carbon nanofibers supporting PtRu nanoparticles for direct methanol fuel cells

机译:支持直接甲醇燃料电池的支持PtRu纳米粒子的氧化碳纳米纤维

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摘要

Oxidized carbon nanofibers (CNFs) have been investigated as supports for PtRu nanoparticles. Two distinct CNFs characterized by different surface area and crystallinity have been considered and treated with nitric acid and a mixture of sulfuric and nitric acids to introduce oxygen functionalities. The oxidized CNFs have been then physico-chemically characterized and used for the preparation of PtRu/CNF catalysts by a modified microemulsion procedure. PtRu nanoparticles of ca. 2 nm size were obtained despite the relatively low surface area of CNFs (90–180 m2 g−18 ). A good particle distribution on the supports has been obtained, as confirmed by TEM micrographs and by the high values of electrochemically active surface areas (up to 200 m2 g−110 ). Catalysts based on oxidized carbon nanofibers present a significant increase of activity toward the electro-oxidation of methanol. The effect of oxidation treatments is not independent of the CNF properties, which must be considered for a convenient support optimization. Nevertheless, the optimum support is obtained when balancing three parameters: a sufficient electrochemical surface area, an improved metal-support interaction due to the effect of oxygen functionalities, and better methanol diffusion through the catalyst pores due to the wettability of oxidized CNFs.
机译:已经研究了氧化碳纳米纤维(CNF)作为PtRu纳米颗粒的载体。已经考虑了以表面积和结晶度不同为特征的两种不同的CNF,并用硝酸以及硫酸和硝酸的混合物进行处理以引入氧官能团。然后对氧化的CNF进行物理化学表征,并通过改进的微乳化程序将其用于制备PtRu / CNF催化剂。约PtRu纳米粒子。尽管CNF的表面积相对较小(90-180 m2 g-18),但仍获得2 nm的尺寸。 TEM显微照片和高电化学活性表面积(最大200 m2 g-110)证实了载体上的颗粒分布良好。基于氧化碳纳米纤维的催化剂对甲醇的电氧化活性显着提高。氧化处理的效果并非独立于CNF特性,必须考虑CNF特性才能实现便捷的载体优化。然而,当平衡三个参数时,可以获得最佳的载体:足够的电化学表面积,由于氧官能团的作用而改善的金属-载体相互作用,以及由于氧化的CNF的可湿性而使甲醇更好地扩散通过催化剂孔。

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