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One Dimensional AuAg Nanostructures as Anodic Catalysts in the Ethylene Glycol Oxidation

机译:一维AuAg纳米结构作为乙二醇氧化阳极催化剂。

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摘要

Direct alcohol fuel cells are highly promising as efficient power sources for various mobile and portable applications. However, for the further advancement of fuel cell technology it is necessary to develop new, cost-effective Pt-free electrocatalysts that could provide efficient alcohol oxidation and also resist cross-over poisoning. Here, we report new electrocatalytic materials for ethylene glycol oxidation, which are based on AuAg linear nanostructures. We demonstrate a low temperature tunable synthesis that enables the preparation of one dimensional (1D) AuAg nanostructures ranging from nanowires to a new nano-necklace-like structure. Using a two-step method, we showed that, by aging the initial reaction mixture at various temperatures, we produced ultrathin AuAg nanowires with a diameter of 9.2 ± 2 and 3.8 ± 1.6 nm, respectively. These nanowires exhibited a high catalytic performance for the electro-oxidation of ethylene glycol with remarkable poisoning resistance. These results highlight the benefit of 1D metal alloy-based nanocatalysts for fuel cell applications and are expected to make an important contribution to the further development of fuel cell technology.
机译:直接酒精燃料电池作为用于各种移动和便携式应用的高效动力源,前景十分广阔。然而,为了使燃料电池技术进一步发展,有必要开发新型的,具有成本效益的无铂电催化剂,该催化剂可提供有效的醇氧化作用,并且还可以抵抗交叉中毒。在这里,我们报告了基于AuAg线性纳米结构的新型乙二醇氧化电催化材料。我们展示了一种低温可调谐合成技术,该技术能够制备一维(1D)AuAg纳米结构,其范围从纳米线到新的类似纳米项链的结构。使用两步法,我们表明,通过在不同温度下老化初始反应混合物,我们生产出了直径分别为9.2±2和3.8±1.6 nm的超薄AuAg纳米线。这些纳米线表现出对乙二醇的电氧化的高催化性能,具有出色的抗毒性。这些结果突出了基于一维金属合金的纳米催化剂在燃料电池应用中的优势,并有望为燃料电池技术的进一步发展做出重要贡献。

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