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Enhanced Raman microprobe imaging of single-wall carbon nanotubes

机译:单壁碳纳米管的增强拉曼显微探针成像

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We explore Raman microprobe capabilities of visualizing single-wall carbon nanotubes (SWCNTs). Although this technique is limited to the micron scale, we demonstrate that images of individual SWCNTs, bundles, or their agglomerates can be generated by mapping Raman active elementary excitations. We measured the Raman response from carbon vibrations in SWCNTs excited by confocal scanning of a focused laser beam. Carbon vibrations reveal key characteristics of SWCNTs such as the nanotube diameter distribution (radial breathing modes (RBM), 100-300 cm~(-1)), the presence of defects and functional groups (D-mode, 1300-1350 cm~(-1)), strain and oxidation states of SWCNTs, as well as the metallic or semi conducting character of the tubes encoded in the lineshape of the 6-modes at 1520-1600 cm~(-1). In addition, SWCNTs are highly anisotropic scatterers. The Raman response from a SWCNT is maximal for incident light polarization parallel to the tube axis and vanishing for perpendicular directions. We show that the SWCNT bundle shape or direction can be determined, with some limitations, from a set of Raman images taken for two orthogonal directions of the incident light polarization.
机译:我们探索可视化单壁碳纳米管(SWCNT)的拉曼微探针功能。尽管此技术仅限于微米级,但我们证明可以通过映射拉曼活性元素激发来生成单个SWCNT,束或其附聚物的图像。我们测量了通过聚焦激光束的共聚焦扫描而激发的SWCNT中碳振动的拉曼响应。碳振动揭示了SWCNTs的关键特性,例如纳米管直径分布(径向呼吸模式(RBM),100-300 cm〜(-1)),缺陷和官能团的存在(D模式,1300-1350 cm〜( -1)),SWCNT的应变和氧化态,以及在1520-1600 cm〜(-1)处以6模线形编码的电子管的金属或半导体特性。另外,SWCNT是高度各向异性的散射体。对于平行于管轴的入射光偏振,SWCNT的拉曼响应最大,而对于垂直方向,则消失。我们表明,SWCNT束的形状或方向可以在某些限制下,从针对入射光偏振的两个正交方向拍摄的一组拉曼图像中确定。

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