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首页> 外文期刊>Journal of Colloid and Interface Science >Pd-Pt alloys nanowires as support-less electrocatalyst with high synergistic enhancement in efficiency for methanol oxidation in acidic medium
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Pd-Pt alloys nanowires as support-less electrocatalyst with high synergistic enhancement in efficiency for methanol oxidation in acidic medium

机译:Pd-Pt合金纳米线作为无载体电催化剂,在酸性介质中具有高协同增效的甲醇氧化效率

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摘要

In a facile approach, Pd73Pt27 alloy nanowires (NWs) with large aspect ratios were synthesized in high yield by using sacrificial templates. Unlike majority of processes, our synthesis was carried out in aqueous solution with no intermittent separating stages for the products, while maintaining the NW morphology up to similar to 30% of Pt. Upon evaporation of their dispersion, the NWs transform into a stable porous membrane due to self-entanglement and can be directly lifted and employed for electrocatalytic applications without external catalyst supports. We show that the NW membranes exhibit efficient electrocatalytic performance for methanol oxidation reaction (MOR) with 10 times higher mass activity and 4.4 times higher specific activity in acidic media as compared to commercial Pt catalysts. The membrane electrocatalysts is robust and exhibited very good stability with retention of similar to 70% mass-activity after 4000 potential cycles. Since Pd was found to be inert towards MOR in acidic medium, our investigation provides a direct estimate of synergistic enhancement of efficiency. Over 10 times increment of mass activity appears to be significantly higher than previous investigations in various other reaction media. (C) 2015 Elsevier Inc. All rights reserved.
机译:通过一种简便的方法,使用牺牲模板可以高产率地合成高纵横比的Pd73Pt27合金纳米线(NWs)。与大多数方法不同,我们的合成是在水溶液中进行的,没有间歇性的产物分离步骤,同时保持了NW形态接近Pt的30%。在其分散体蒸发后,由于自缠结,NWs转变为稳定的多孔膜,可以直接提起并用于电催化应用,而无需外部催化剂载体。我们表明,NW膜对甲醇氧化反应(MOR)表现出有效的电催化性能,与市售Pt催化剂相比,在酸性介质中的质量活性高10倍,比活性高4.4倍。膜电催化剂坚固耐用,表现出非常好的稳定性,在4000个潜在的循环后,保留率接近70%。由于发现Pd在酸性介质中对MOR呈惰性,因此我们的研究提供了协同增效的直接估计。在各种其他反应介质中,超过10倍的质量活度增量似乎明显高于以前的研究。 (C)2015 Elsevier Inc.保留所有权利。

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