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Study of single walled carbon nanotube functionalization by means of surface enhanced Raman spectroscopy

机译:表面增强拉曼光谱研究单壁碳纳米管功能化

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Raman spectroscopy is known to provide information about the quality of the single walled carbon nanotubes (SWCNT). The information is based on the intensity ratio of D and G spectral modes and the frequency of RBM modes. However due to resonance nature of Raman spectrum of the nanotubes this method is not suitable to detect functionalization of the nanotubes. Surface enhanced Raman spectroscopy (SERS) is known to enhance the Raman bands up to fourteen orders of magnitude. Preferable adsorption sites for small silver nanoparticles are expected to be the functional groups of SWCNT; therefore SERS technique allows detecting small amounts of functional groups despite strong resonance Raman from backbone of SWCNT. In this study functionalized nanotubes were dispersed in silver colloid and dried on the standard silver plate for Raman measurements. Spectra of SWCNT without colloid in the spectral range between 50 and 1800 cm~(-1) exhibit only four main spectral features: G, D, and RBM modes between 200 and 400 cm~(-1). Spectra of SWCNT with the colloid exhibit several additional spectral bands which do not belong to the colloid. These bands attributed to vibrations of C-O, C-C and O-H from the functional groups and the carbon atom of the SWCNT attached to the corresponding group. The bands associated with the vibrations involving O atom is an indication that silver nanoparticles interact with the functional group attached to SWCNT.
机译:已知拉曼光谱法可提供有关单壁碳纳米管(SWCNT)质量的信息。该信息基于D和G光谱模式的强度比以及RBM模式的频率。然而,由于纳米管的拉曼光谱的共振性质,该方法不适用于检测纳米管的功能化。已知表面增强拉曼光谱(SERS)可以将拉曼谱带增强到14个数量级。预期小的银纳米颗粒的优选吸附位点是SWCNT的官能团。因此,尽管来自SWCNT主链的强共振拉曼效应,SERS技术仍允许检测少量的官能团。在这项研究中,将功能化的纳米管分散在胶体银中,并在标准银板上干燥以进行拉曼测量。在50至1800 cm〜(-1)的光谱范围内不含胶体的SWCNT的光谱仅表现出四个主要光谱特征:200、400 cm〜(-1)的G,D和RBM模式。具有胶体的SWCNT的光谱表现出几个不属于胶体的附加光谱带。这些谱带归因于C-O,C-C和O-H来自官能团和与相应基团相连的SWCNT的碳原子的振动。与涉及O原子的振动相关的谱带表明,银纳米颗粒与附着在SWCNT上的官能团相互作用。

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