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Development of a dry process for coating metal nanoparticles on carbon nanotubes

机译:在碳纳米管上涂覆金属纳米颗粒的干法开发

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Metal nanoparticles such as platinum (Pt) and gold (Au) decorated CNTs have been thoroughly investigated as electrode of fuel cells and chemical and biological sensors. In these applications, the size and the density of nanoparticles are very important, because the catalyst activation depends on the particle size and the deposition amount. We focused on a dry processing without solutions and attempted to fabricate metal nanoparticles on CNTs by sputtering. In this study, the effect of the crystallinity of CNTs surface on the morphology of Pt film deposited by sputtering process was investigated. To control the crystallinity of CNTs surface, the Ar plasma irradiation was applied to CNTs and the crystallinity of CNTs surface was analyzed by Raman spectroscopy. As results, the ID/IG ratio of CNTs surface increased with the Ar plasma irradiation time. This suggested that the crystallinity of CNTs was changed to amorphous carbon with increasing the plasma time. Furthermore, the morphology of Pt on as-received CNTs and plasma-treated CNTs was changed to island shape by annealing at 750°C. As a result, the particle size on plasma-treated CNTs was smaller with increasing the plasma treatment time. This indicated that morphology of Pt on CNTs related to crystallinity of CNTs surface.
机译:金属纳米颗粒,如铂(Pt)和金(Au)装饰的CNT已被彻底研究用作燃料电池和化学和生物传感器的电极。在这些应用中,纳米颗粒的尺寸和密度非常重要,因为催化剂的活化取决于颗粒尺寸和沉积量。我们专注于没有溶液的干法加工,并试图通过溅射在CNT上制造金属纳米颗粒。在这项研究中,研究了碳纳米管表面的结晶度对溅射工艺沉积的Pt膜形态的影响。为了控制CNT表面的结晶度,将Ar等离子体照射到CNT上,并通过拉曼光谱法分析CNT表面的结晶度。结果,CNT表面的ID / IG比随着Ar等离子体照射时间而增加。这表明随着等离子体时间的增加,CNT的结晶度变为无定形碳。此外,通过在750℃下退火,将原样的CNT和经等离子体处理的CNT上的Pt的形态改变为岛状。结果,随着等离子体处理时间的增加,等离子体处理的CNT上的粒径较小。这表明碳纳米管上铂的形态与碳纳米管表面的结晶度有关。

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