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Carbon-Supported Pt-Co Catalysts Prepared by a Modified Polyol Process as Cathodes for PEM Fuel Cells

机译:通过改性多元醇工艺制备的碳载Pt-Co催化剂作为PEM燃料电池的阴极

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摘要

In this work, carbon-supported Pt70Co30 nanoparticles were prepared by a polyol process using a long-chain diol as reducer (hexadecanediol) and oleic acid and oleylamine as stabilizers. Depending on the synthesis conditions, Pt70Co30/C nanocatalysts with very small particle size (1.9 ± 0.2 nm) and narrow distribution homogeneously dispersed on the carbon support and having a high degree of alloying without the need of thermal treatments were obtained. The as-prepared catalyst presents an excellent performance as proton exchange membrane fuel cells (PEMFC) cathode material. In terms of mass activity (MA), the Pt70Co30/C electrocatalysts produced single fuel cell polarization response superior to that of commercial catalyst. To analyze alloying effects, the result of thermal treatment at low temperatures (200-400 C) was also evaluated and an increase of average crystallite size and a lower degree of alloying, probably associated to cobalt oxidation, were evidenced.
机译:在这项工作中,使用长链二醇作为还原剂(十六烷二醇),以油酸和油胺为稳定剂,通过多元醇工艺制备了碳载Pt70Co30纳米颗粒。根据合成条件,获得具有非常小的粒径(1.9±0.2nm)和窄分布均匀分布在碳载体上并且具有高合金化程度而无需热处理的Pt70Co30 / C纳米催化剂。所制备的催化剂作为质子交换膜燃料电池(PEMFC)阴极材料具有出色的性能。就质量活性(MA)而言,Pt70Co30 / C电催化剂产生的单燃料电池极化响应优于商业催化剂。为了分析合金化效果,还评估了低温(200-400 C)的热处理结果,并证明了平均晶粒尺寸的增加和合金化程度的降低(可能与钴氧化有关)。

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