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Creation of novel structured carbon nanotubes using different-polarity ion plasmas

机译:使用不同极性离子等离子体创建新型结构化碳纳米管

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In order to develop novel functional carbon-based nanomaterials, an original approach using plasma technology has been performed. When positive or negative bias voltages are applied to a substrate that is covered with single-walled carbon nanotubes (SWNTs) and immersed in alkali-fullerene plasmas, accelerated negative fullerene or positive alkali-metal ions are irradiated on the SWNTs through plasma sheaths in front of the substrate. Field emission gun transmission electron microscopy (FEG-TEM) images clearly show that drastic structural modifications such as severe bending of SWNT bundles and tube tip termination take place after the ion irradiation. Energy dispersive x-ray spectrometry confirms the existence of the elements Na, K and Cs in the samples after alkali-metal irradiation. In particular, Cs encapsulation inside the SWNTs is directly observed, the configuration of which is demonstrated to comprise three varieties by FEG-TEM and scanning TEM. In the case of C-60(-) irradiation by positive bias application, on the other hand, SWNTs encapsulating fullerene molecules are clearly observed. Furthermore, the fullerene encapsulation yield within the SWNTs linearly increases with an enhancement of the plasma density used. Finally, a sequential bias application with polarity change gives the possibility of formation of a nanojunction structure composed of Cs rows and C-60 chains. It is worth emphasizing that our results open a new possibility for novel structured material synthesis using plasma technology.
机译:为了开发新颖的功能性碳基纳米材料,已经进行了使用等离子体技术的原始方法。将正或负偏置电压施加到覆盖有单壁碳纳米管(SWNT)并浸入碱富勒烯等离子体中的基板时,通过正面的等离子体鞘在SWNT上照射加速的负富勒烯或正碱金属离子基板的场发射枪透射电子显微镜(FEG-TEM)图像清楚地表明,离子辐照后发生了剧烈的结构改变,例如SWNT束的严重弯曲和管尖端的终止。能量色散X射线光谱法证实了碱金属辐照后样品中Na,K和Cs元素的存在。特别地,直接观察到SWNT内部的Cs包封,通过FEG-TEM和扫描TEM证明其配置包括三个变体。另一方面,在通过正偏压施加的C-60(-)照射的情况下,清楚地观察到包封富勒烯分子的SWNT。此外,随着使用的血浆密度的增加,SWNT内的富勒烯包封率线性增加。最后,随着极性变化的顺序偏压施加,可以形成由Cs行和C-60链组成的纳米结结构。值得强调的是,我们的研究结果为使用等离子体技术合成新型结构材料开辟了新的可能性。

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