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Selective optical property modification of double-walled carbon nanotubes by fluorination

机译:氟化修饰双壁碳纳米管的选择性光学性质

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We found that by fluorination of double-walled carbon nanotubes (DWNTs), it is possible to suppress only the Raman radial breathing mode and absorption peaks from the outer (large diameter) tubes of DWNTs. In contrast, Raman signals from the inner shells showed no difference from the pristine DWNTs. The stability of the inner shells of fluorinated DWNTs was also confirmed from the photoluminescence (PL) map and the optical absorption spectra, which only showed the signals from the inner shells of DWNTs, with no distinct charge in the optical properties of the inner tubes after fluorination. Our results indicate that once fluorinated, there exist only a weak, if not none, interaction between the inner tube and the outer fluorinated tube, proving that fluorination can be used to suppress the optical properties of carbon nanotubes without interfering the properties of inner tubes. The present finding can be important in electronic and sensor applications, keeping the inner tube from having unwanted contact with other substances that may distract from the inner tube's own characteristics.
机译:我们发现,通过双壁碳纳米管(DWNT)的氟化,可以仅抑制拉曼径向呼吸模式和DWNTs外(大直径)管的吸收峰。相反,来自内壳的拉曼信号与原始的DWNTs没有差异。氟化DWNTs内壳的稳定性也可以从光致发光(PL)图和光吸收光谱中得到证实,这些图仅显示了DWNTs内壳的信号,而后内管的光学特性没有明显的电荷。氟化。我们的结果表明,氟化后,内管和外氟化管之间只有很弱的相互作用,即使不是没有相互作用,证明氟化可以用来抑制碳纳米管的光学性能,而不会干扰内管的性能。目前的发现在电子和传感器应用中可能很重要,它可以防止内管与可能干扰内管自身特性的其他物质发生不必要的接触。

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