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Platinum–Vanadium Oxide Nanotube Hybrids

机译:铂-钒氧化物纳米管杂化物

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摘要

The present contribution reports on the features of platinum-based systems supported on vanadium oxide nanotubes. The synthesis of nanotubes was carried out using a commercial vanadium pentoxide via hydrothermal route. The nanostructured hybrid materials were prepared by wet impregnation using two different platinum precursors. The formation of platinum nanoparticles was evaluated by applying distinct reduction procedures. All nanostructured samples were essentially analysed by X-ray diffraction and transmission electron microscopy. After reduction, transmission electron microscopy also made it possible to estimate particle size distribution and mean diameter calculations. It could be seen that all reduction procedures did not affect the nanostructure of the supports and that the formation of metallic nanoparticles is quite efficient with an indistinct distribution along the nanotubes. Nevertheless, the reduction procedure determined the diameter, dispersion and shape of the metallic particles. It could be concluded that the use of H2PtCl6 is more suitable and that the use of hydrogen as reducing agent leads to a nanomaterial with unagglomerated round-shaped metallic particles with mean size of 6–7 nm.
机译:本文稿报道了钒氧化物纳米管上支持的铂基体系的特征。使用市售的五氧化二钒通过水热途径进行纳米管的合成。使用两种不同的铂前体通过湿法浸渍制备了纳米结构杂化材料。通过应用独特的还原程序评估了铂纳米颗粒的形成。基本上所有的纳米结构样品都通过X射线衍射和透射电子显微镜进行了分析。还原后,透射电子显微镜还可以估计粒度分布和平均直径计算。可以看出,所有还原程序均不影响载体的纳米结构,并且金属纳米颗粒的形成非常有效,并且沿纳米管的分布不明显。然而,还原过程决定了金属颗粒的直径,分散度和形状。可以得出结论,使用H2PtCl6更合适,并且使用氢作为还原剂会导致纳米材料具有平均大小为6-7 nm的未团聚的圆形金属颗粒。

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