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Raman and IR Spectroscopy of Chemically Processed Single-Walled Carbon Nanotubes

机译:化学处理的单壁碳纳米管的拉曼光谱和红外光谱

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摘要

IR and Raman spectroscopy has been used to study the evolution of the vibrational spectrum of bundled single-walled carbon nanotubes (SWNTs) during the purification process needed to remove metal catalyst and amorphous carbon present in arc-derived SWNT soot.We have carried out a systematic study to define the different outcomes stemming from the purification protocol (e.g.,DO,DO/HCl,DO/ HNO_3,H_2O_2,H_2O_2/HCl),where dry oxidation (DO) or refluxing in H_2O_2 was used in a first purification step to remove amorphous carbon.The second step involves acid reflux (HCl or HNO_3) to remove the residual growth catalyst (Ni-Y).During strong chemical processing,it appears possible to create additional defects where carbon atoms are eliminated,the ring structure is now open,localized C=C bonds are created,and O-containing groups can be added to this defect to stabilize the structure.Evolution of SWNT skeletal disorder obtained via chemical processing was studied by Raman scattering.Higher intensity ratios of R-and G-band (I_R/I_G) are more typically found in SWNT materials with low D-band intensity and narrow G-band components.Using IR transmission through thin films of nanotubes,we can resolve the structure due to functional groups that were present in the starting material or added through chemical processing.After high-temperature vacuum annealing of the purified material at 1100degC,IR spectroscopy shows that most of the added functional groups can be removed and that the structure that remains is assigned to the one-and two-phonon modes of SWNTs.
机译:红外和拉曼光谱法已被用于研究在纯化过程中成束的单壁碳纳米管(SWNT)的振动光谱的演变,以去除电弧衍生的SWNT烟灰中存在的金属催化剂和无定形碳。进行系统研究以定义源自纯化方案的不同结果(例如,DO,DO / HCl,DO / HNO_3,H_2O_2,H_2O_2 / HCl),其中在第一步纯化过程中使用干氧化(DO)或在H_2O_2中回流去除无定形碳。第二步涉及酸回流(HCl或HNO_3)以去除残留的生长催化剂(Ni-Y)。在强大的化学加工过程中,似乎有可能在消除碳原子的地方产生其他缺陷,现在是环结构形成开放的,局部的C = C键,并可以在该缺陷中添加含O的基团以稳定结构。通过拉曼散射研究了化学加工获得的SWNT骨骼疾病的演变。 R波段和G波段的比值(I_R / I_G)更常见于具有低D波段强度和窄G波段成分的SWNT材料中。使用通过纳米管薄膜的IR透射,我们可以解析结构,因为原料中存在的或通过化学处理添加的官能团。纯化的材料在1100°C高温真空退火后,红外光谱表明,大部分添加的官能团均可被去除,剩余的结构被赋予SWNT的一声子和二声子模式。

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  • 来源
    《Journal of the American Chemical Society》 |2005年第44期|p.15437-15445|共9页
  • 作者单位

    Contribution from the Departments of Physics and Materials Science,The Pennsylvania State University,University Park,Pennsylvania 16802,and Centro de Desenvolvimento da Tecnologia Nuclear,CDTN/CNEN,Belo Horizonte,MG,Brazil;

    Contribution from the Departments of Physics and Materials Science,The Pennsylvania State University,University Park,Pennsylvania 16802,and Centro de Desenvolvimento da Tecnologia Nuclear,CDTN/CNEN,Belo Horizonte,MG,Brazil;

    Contribution from the Departments of Physics and Materials Science,The Pennsylvania State University,University Park,Pennsylvania 16802,and Centro de Desenvolvimento da Tecnologia Nuclear,CDTN/CNEN,Belo Horizonte,MG,Brazil;

    Contribution from the Departments of Physics and Materials Science,The Pennsylvania State University,University Park,Pennsylvania 16802,and Centro de Desenvolvimento da Tecnologia Nuclear,CDTN/CNEN,Belo Horizonte,MG,Brazil;

    Contribution from the Departments of Physics and Materials Science,The Pennsylvania State University,University Park,Pennsylvania 16802,and Centro de Desenvolvimento da Tecnologia Nuclear,CDTN/CNEN,Belo Horizonte,MG,Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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