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Novel preparation method of composite catalyst composed of Pt wires and particles for low-temperature fuel cell applications

机译:由Pt线和颗粒组成的用于低温燃料电池的复合催化剂的新制备方法

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摘要

A novel composite type catalyst of Pt particles and Pt wires was prepared for low-temperature fuel cell applications. For this preparation, a specialized multi-wall carbon nanotube with an amorphous carbon structure on the outside wall was used, and a sub-substrate method using silica as the sub-substrate material was performed. According to HR-TEM analysis, about 30-40% Pt wire-type catalyst was observed with respect to the total Pt catalysts. This new type of catalyst showed about twice the oxygen reduction activity of normal particle type catalysts. The enhanced activity results from the active planes, which were especially exposed on the surface of the Pt wire-type catalyst. From the cyclic voltammogram, an increased peak area of the Pt(100) plane was confirmed. This paper suggests a novel method that is able to prepare the composite type catalyst of Pt wires and particles without any sort of template.
机译:制备了一种新型的Pt颗粒和Pt线复合型催化剂,用于低温燃料电池应用。对于该制备,使用了在外壁上具有无定形碳结构的专用多壁碳纳米管,并且进行了使用二氧化硅作为副基板材料的副基板方法。根据HR-TEM分析,相对于全部Pt催化剂,观察到约30-40%的Pt线型催化剂。这种新型催化剂显示出的氧还原活性约为普通颗粒型催化剂的两倍。活性增强是由活性平面引起的,该活性平面尤其暴露在铂丝型催化剂的表面上。从循环伏安图,可以确认Pt(100)平面的峰面积增加。本文提出了一种无需任何模板即可制备铂线和颗粒复合型催化剂的新方法。

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