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Raman spectroscopy of double walled carbon nanotubes with different metallic and semiconducting configurations

机译:具有不同金属和半导体构型的双壁碳纳米管的拉曼光谱

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摘要

A double-walled carbon nanotube (DWNT) provides the simplest system to study the interaction between concentric tubes in carbon nanotubes. The inner and outer walls of a DWNT can be metallic (M) or semiconducting (S), and each of the four possible configurations (MUM, M©S, SUS, S©M) has different electronic properties. We analyze the Raman spectra from undoped and boron-doped chemical vapor deposition-derived DWNT bundles (CVD-DWNTs) that exhibit the "coalescence inducing mode" (CIM) as they are heat treated at temperatures between 12000C and 2000'C. We then report, for the first time, detailed Raman spectroscopy experiments carried out on individual DWNTs, where both concentric tubes of the same DWNT are measured under resonance conditions. A technique is developed that combines tunable Raman spectroscopy with Raman mapping procedures and electron beam lithography to enable the acquisition of Raman spectra from the individual constituents of the same isolated DWNT. By using the technique mentioned above, we measure resonant Raman scattering from 11 individual C60-derived double wall carbon nanotubes all having inner semiconducting (6,5) tubes and various outer metallic tubes. We report that in an individual DWNT an increase in the RBM frequency of the inner tube is related to an increase in the RBM frequency of the outer tube due to a decrease in the wall to wall distance. Finally, we use 40 laser excitation energies to analyze the differences in the Raman spectra from chemical vapor deposition-derived DWNT bundles (CVD-DWNTs), fullerene-derived DWNT bundles (C₆₀-DWNTs) and individual fullerene-derived DWNTs with inner type I and type II semiconducting tubes paired with outer metallic tubes.
机译:双层碳纳米管(DWNT)提供了最简单的系统来研究碳纳米管中同心管之间的相互作用。 DWNT的内壁和外壁可以是金属(M)或半导体(S),并且四种可能的配置(MUM,MS,SUS,SM)中的每一个都具有不同的电子特性。我们分析了未掺杂和掺硼化学气相沉积衍生的DWNT束(CVD-DWNT)的拉曼光谱,这些束在12000C至2000'C的温度下进行热处理时表现出“聚结诱导模式”(CIM)。然后,我们首次报告了对单个DWNT进行的详细拉曼光谱实验,其中在共振条件下测量了同一DWNT的两个同心管。开发了一种将可调谐拉曼光谱与拉曼映射程序以及电子束光刻技术相结合的技术,从而能够从同一隔离的DWNT的各个成分中获取拉曼光谱。通过使用上述技术,我们测量了11个C60衍生的双壁碳纳米管的共振拉曼散射,这些碳纳米管均具有内部半导体(6,5)管和各种外部金属管。我们报告说,在单个DWNT中,由于壁到壁距离的减小,内管的RBM频率的增加与外管的RBM频率的增加有关。最后,我们使用40种激光激发能来分析化学气相沉积衍生的DWNT束(CVD-DWNTs),富勒烯衍生的DWNT束(C₆₀-DWNTs)和单个内层富勒烯衍生的DWNTs在拉曼光谱中的差异II型半导体管与外部金属管配对。

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    Villalpando Páez Federico;

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  • 年度 2010
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