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High performance of cup-stacked-type carbon nanotubes as a Pt-Ru catalyst support for fuel cell applications

机译:杯叠式碳纳米管作为Pt-Ru催化剂载体的高性能,可用于燃料电池应用

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摘要

The potential of cup-stacked-type carbon nanotubes (CSCNTs) as a catalyst support for the direct methanol fuel cells has been investigated by the electrochemical oxidation of methanol at various temperatures. The CSCNT-supported platinum-ruthenium (Pt-Ru) bimetallic catalyst exhibited twice as high a power density as the Pt-Ru catalyst supported on Vulcan XC-72 carbon, which is widely used as a catalyst support for the DMFC electrodes. The microscopic analysis of the CSCNT-supported Pt-Ru catalysts revealed that the bimetallic electrocatalysts were well dispersed on the CSCNT supports, and the particle size of the electrocatalysts was ca. 5 nm. The results of this work indicate that the performance of the carbon support materials is largely influenced by their electrical properties, morphology and crystallographic structures.
机译:通过在各种温度下对甲醇进行电化学氧化,已经研究了杯叠式碳纳米管(CSCNT)作为直接甲醇燃料电池的催化剂载体的潜力。 CSCNT负载的铂-钌(Pt-Ru)双金属催化剂的功率密度是Vulcan XC-72碳上负载的Pt-Ru催化剂的两倍,后者被广泛用作DMFC电极的催化剂载体。对CSCNT负载的Pt-Ru催化剂的显微分析表明,双金属电催化剂很好地分散在CSCNT载体上,电催化剂的粒度约为。 5纳米这项工作的结果表明,碳载体材料的性能在很大程度上受其电性能,形态和晶体学结构的影响。

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