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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Raman Spectroscopic Investigation of Individual Single-Walled Carbon Nanotubes Helically Wrapped by Ionic, Semiconducting Polymers
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Raman Spectroscopic Investigation of Individual Single-Walled Carbon Nanotubes Helically Wrapped by Ionic, Semiconducting Polymers

机译:离子,半导体聚合物螺旋包裹的单个单壁碳纳米管的拉曼光谱研究

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摘要

Raman-active vibrational modes of (6,5) chirality-enriched single-walled carbon nanotubes (SWNTs), helically wrapped by semiconducting poly[2,6-{1,5-bis(3-propoxysulfonic acid sodium salt)}naphthylene]ethynylene (PNES), are described in great detail. At an irradiation wavelength of 568.2 nm, the extent to which the environment impacts the nanotube vibrational signature can be probed; in particular, the absence of a G band shift for PNES-[(6,5) SWNT] samples relative to benchmark surfactant-coated nanotubes indicates the lack of any significant charge transfer between the PNES strand and the SWNT skeleton, but electronic spectra provide compelling evidence for polymer-to-SWNT energy transfer. At an irradiation wavelength of 457.9 nm, vibrational modes associated with PNES chains that wrap (6,5) SWNTs are conspicuously enhanced. Under 514.5 nm irradiation, PNES-[(6,5) SWNTs] are not excited in resonance but G and G' bands associated with these nanohybrids are strongly enhanced, reflecting the excitation of a multiphonon-mediated vibronic transition of the (6,5) SWNT backbone. At a 488.0 nm irradiation wavelength, Raman spectral signatures of both the PNES polymer and the vibronically excited (6,5) SWNT skeleton through one-phonon-assisted processes are pronounced, demonstrating that a specific SWNT chirality and the corresponding semiconducting polymer helically wrapped about its surface can be probed using an excitation wavelength that does not resonantly excite the SWNT structure.
机译:聚[2,6- {1,5-双(3-丙氧基磺酸钠盐)}萘]半螺旋缠绕的(6,5)富含手性的单壁碳纳米管(SWNT)的拉曼振动模式乙炔基(PNES)进行了详细介绍。在568.2 nm的照射波长下,可以探测到环境对纳米管振动信号的影响程度。特别是,相对于基准表面活性剂涂覆的纳米管,PNES-[(6,5)SWNT]样品不存在G带位移,这表明PNES链和SWNT骨架之间没有任何明显的电荷转移,但电子光谱提供了聚合物到SWNT能量转移的有力证据。在457.9 nm的照射波长下,与包裹(6,5)个SWNT的PNES链相关的振动模式显着增强。在514.5 nm的辐射下,PNES-[(6,5)SWNTs]并未被共振激发,但与这些纳米杂化分子相关的G和G'谱带却被强烈增强,反映了(6,5 )SWNT骨干网。在488.0 nm的辐照波长下,PNES聚合物和通过单声子辅助过程被玻璃纤维激发的(6,5)SWNT骨架的拉曼光谱特征明显,表明特定的SWNT手性和相应的半导体聚合物螺旋缠绕可以使用不会共振激发SWNT结构的激发波长探测其表面。

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