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Facile synthesis and characterization of Au-Cu, Pt-Cu nanotubes by sacrificial template method

机译:牺牲模板法轻松合成和表征Au-Cu,Pt-Cu纳米管

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摘要

Bimetallic nanotubes with noble metals have already shown more versatile performances than single-metallic nanotubes. However, most of the current methods to prepare bimetallic nanotubes are based on existed hard template, which could not be easily removed after the formation of bimetallic nanotubes. It is still a challenge for synthesizing bimetallic nanotubes without the template removing subsequently. In this research, we developed a novel method to prepare noble metal-copper (Cu) bimetallic nanotubes with Cu nanowires as the sacrificial template. The aqueous solutions with chloroauric acid or palladium chloride were used to bring displacement reaction with Cu nanowires. The simultaneous alloying effect and Kirkendall effect result in hollow nanostructures. The Cu nanowire was converted to a bimetallic hollow with Au-Cu or Pt-Cu alloy nanotubes. This facile method could achieve large-scale preparation of bimetallic nanotubes with noble metals. Furthermore, this alloy nanotube shows superior electrochemical catalytic performance than single-metallic nanoparticles.
机译:具有贵金属的双金属纳米管已经显示出比单金属纳米管更通用的性能。但是,目前大多数制备双金属纳米管的方法都是基于已存在的硬模板,在形成双金属纳米管后很难轻易去除。在不随后去除模板的情况下合成双金属纳米管仍然是一个挑战。在这项研究中,我们开发了一种以铜纳米线为牺牲模板制备贵金属-铜(Cu)双金属纳米管的新方法。用含氯金酸或氯化钯的水溶液进行与铜纳米线的置换反应。同时的合金化作用和柯肯德尔效应产生空心的纳米结构。将铜纳米线转换为具有Au-Cu或Pt-Cu合金纳米管的双金属空心。这种简便的方法可以实现大规模制备含贵金属的双金属纳米管。此外,该合金纳米管显示出比单金属纳米颗粒优异的电化学催化性能。

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