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首页> 外文期刊>Electrochimica Acta >Evidence for high performances of low Pt loading electrodes based on capped platinum electrocatalyst and carbon nanotubes in fuel cell devices
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Evidence for high performances of low Pt loading electrodes based on capped platinum electrocatalyst and carbon nanotubes in fuel cell devices

机译:燃料电池装置中基于封端铂电极催化剂和碳纳米管的低Pt负载电极高性能的证据

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摘要

Recently we reported the preparation and electrochemical behaviour of porous electrodes based on the controlled combination of carbon nanotubes and capped platinum nanoparticles towards oxygen reduction. Due to the organic crown of the nanoparticles, the electrodes exhibited low hydrogen underpotential deposition (H upd) electroactive surface areas but significant activity towards oxygen reduction was recorded down to very low platinum loadings of few μg/cm~2. While the presence of organic stabilizing material, at the surface of the electrocatalyst synthesized by wet chemistry, may be considered as a potential drawback in fuel cell community, we present in this paper results showing that our capped electrocatalyst associated with carbon nanotubes can be used without any pre-treatment and exhibit high performances in fuel cell devices, in spite of low platinum loadings. Beyond the practical interest of such capped nanoparticles in fuel cell technology demonstrated here, fundamental question related to the high performances of the capped electrocatalyst are still opened and are currently under investigation.
机译:最近,我们报道了基于碳纳米管和封端的铂纳米粒子对氧还原的可控组合的多孔电极的制备和电化学行为。由于纳米粒子的有机冠状结构,电极表现出低的氢不足位电沉积(H upd)电活性表面积,但是记录到对氧还原的显着活性,直至极低的铂负载量(数μg/ cm〜2)。虽然在湿化学合成的电催化剂表面存在有机稳定材料,这可能被认为是燃料电池领域的潜在缺陷,但我们在本文中得出的结果表明,与碳纳米管缔合的封端电催化剂可以不经使用而使用尽管铂含量低,但可以进行任何预处理,并在燃料电池装置中表现出较高的性能。除了这里展示的这种封端的纳米颗粒在燃料电池技术中的实际应用兴趣之外,与封端的电催化剂的高性能有关的基本问题仍然是悬而未决的,目前正在研究中。

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