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A new purification method for carbon nanotubes and associated atomic force microscope force-distance curve analysis

机译:碳纳米管的纯化新方法及相关的原子力显微镜力-距离曲线分析

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摘要

The discovery of carbon nanotubes has opened numerous cutting-edge nanoscale research fields, such as microelectronic devices and biomedical applications. Although pure nanotubes suffice for most purposes, highly purified magnetic carbon nanotubes are more suitable for specialized applications such as gene delivery. The conventional methods of purification are too harsh for nanotubes to retain their magnetic properties, hence it requires loading of magnetic nanoparticles inside individual tubes. In this paper, we propose an innovative purification method to directly extract magnetic carbon nanotubes from arc-discharged single-walled carbon nanotubes. The procedure is easy, and atomic force microscope (AFM) force-distance curve analysis combined with transmission electron microscopy (TEM) images are used to monitor the purification process. The AFM force-distance curves present the forces between the AFM tip and different sample surfaces. By comparing the peak values on a series of curves associated with different sample points, we can directly differentiate the carbon nanotubes retaining magnetic characteristics from other nanotubes after the purification process.
机译:碳纳米管的发现打开了许多前沿的纳米级研究领域,例如微电子设备和生物医学应用。尽管纯纳米管满足大多数目的,但高度纯化的磁性碳纳米管更适合于特殊应用,例如基因传递。对于纳米管而言,常规的纯化方法过于苛刻,以至于无法保留其磁性,因此需要将磁性纳米颗粒装载到各个管子中。在本文中,我们提出了一种创新的纯化方法,可以直接从电弧放电的单壁碳纳米管中提取磁性碳纳米管。该过程很容易,并且原子力显微镜(AFM)力-距离曲线分析与透射电子显微镜(TEM)图像相结合来监控纯化过程。 AFM力-距离曲线显示了AFM尖端和不同样品表面之间的力。通过比较与不同采样点相关的一系列曲线上的峰值,我们可以在纯化过程之后直接将保留磁性特征的碳纳米管与其他纳米管区分开。

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