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On the preparation methods for carbon nanofiber-supported Pt catalysts

机译:碳纳米纤维负载铂催化剂的制备方法

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摘要

A study of the suitability of different methods for preparing highly loaded, well dispersed carbon nanofiber (CNF) supported Pt catalysts intended for application in fuel cells is reported. Preparation routes that are successfully applied on conventional carbon supports are hampered by the lower surface area and number of surface groups on CNFs. Ion exchange, homogeneous deposition precipitation and impregnation are all techniques that are limited to low metal loading on this CNF support. The most promising methods are the colloidal methods. By the modified polyol method, a Pt-content of 24 wt% with a particle size of 2-4 nm was achieved. CNFs could also be completely covered by 2-3 nm Pt oxide particles by using the metal-oxide colloid route, reaching a Pt-content of 17 wt%. The merits that make these methods more suitable than the other methods and the mechanism for deposition of Pt particles on CNFs are discussed.
机译:报道了对准备用于燃料电池的高负载,分散良好的碳纳米纤维(CNF)负载的Pt催化剂的不同方法的适用性的研究。 CNF的较低表面积和表面基团数量阻碍了成功应用于常规碳载体上的制备路线。离子交换,均匀沉积沉淀和浸渍都是限制该CNF载体上低金属负载的技术。最有前途的方法是胶体方法。通过改进的多元醇方法,Pt含量为24 wt%,粒径为2-4 nm。通过使用金属氧化物胶体路线,CNFs也可以被2-3 nm Pt氧化物颗粒完全覆盖,从而达到17 wt%的Pt含量。讨论了使这些方法比其他方法更适合的优点以及在CNF上沉积Pt颗粒的机理。

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