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Room-temperature growth and characterization of iron-carbon nanocomposite fibers

机译:室温生长及铁 - 碳纳米复合纤维的表征

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Graphite plates were Ar{sup}+ ion-sputtered with a simultaneous Fe supply at room temperature. The sputtered surfaces were characterized by various kinds of carbon compostites, such as conical protrusions with and without single carbon nanocomposite fibers (CNCFs) on the top, depending on the Fe supply rates. The CNCFs thus grown were confirmed to be amorphous-like fibers without a hollow structure and possess no distinct boundary between the cone and the CNCF by transmission electron microscope. As revealed by their compositional analysis, CNCFs surely composed of carbon and iron. Since the various kind of metals can be doped into the room-temperature grown carbon nanofibers, this ion-irradiation method is believed to be promising as a new approach to synthesize one-dimensional nanomaterials at low temperatures.
机译:石墨板是Ar {sup} +离子溅射,在室温下具有同时的Fe供应。溅射表面的特征在于各种碳堆积质,例如顶部的锥形突起,并且在顶部没有单碳纳米复合纤维(CNCFS),这取决于Fe供应率。如此生长的CNCF被证实是无定形的纤维,而没有中空结构,通过透射电子显微镜在锥体和CNCF之间具有没有明显的边界。如其组成分析所揭示的,CNCF肯定由碳和铁组成。由于各种金属可以掺杂到室温生长的碳纳米纤维中,因此认为这种离子照射方法是在低温下合成一维纳米材料的新方法。

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