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首页> 外文期刊>Physica, E. Low-dimensional systems & nanostructures >DNA-wrapped carbon nanotubes aligned in stretched gelatin films: Polarized resonance Raman and absorption spectroscopy study
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DNA-wrapped carbon nanotubes aligned in stretched gelatin films: Polarized resonance Raman and absorption spectroscopy study

机译:在拉伸明胶薄膜中对齐的DNA包裹碳纳米管:偏振谐振拉曼和吸收光谱研究

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摘要

We present the study of DNA-wrapped single-walled carbon nanotubes (SWNTs) embedded in the stretched gelatin film by the polarized resonance Raman spectroscopy and visible-NIR optical absorption. The polarized dependent absorption spectra taken along and normal to the stretching direction demonstrate a comparatively high degree of the alignment of isolated SWNTs in the gelatin matrix. The analysis of Raman spectra of isolated SWNTs in the gelatin stretched films showed that the degree of the alignment of carbon nanotubes along the stretching direction is about 62%. The dependence of the peak position of G(+)-band in Raman spectra on the polarization angle. between the polarization of the incident light and the direction of the stretching of films was revealed. This shift is explained by the different polarization dependence of the most intensive A and E-1 symmetry modes within the G(+)-band. The performed studies of embedded DNA-wrapped nanotubes in the gelatin film show the simple method for obtaining the controlled ordered biocompatible nanotubes inside a polymer matrix. It can be used for manufacturing sizable flexible self-transparent films with integrated nanoelectrodes.
机译:我们介绍了通过偏振谐振拉曼光谱和可见NIR光学吸收嵌入拉伸明胶膜中的DNA包裹的单壁碳纳米管(SWNT)的研究。沿着和正常到拉伸方向截取的偏振依赖性吸收光谱证明了明胶基质中分离的SWNT的比定程度。在明胶拉伸膜中分离的SWNT的拉曼光谱的分析表明,碳纳米管沿拉伸方向的比对的程度为约62%。 G(+)波段在拉曼光谱对偏振角的依赖性的依赖性。揭示了入射光的极化和薄膜拉伸的方向之间。通过G(+)频带内最强烈的A和E-1对称模式的不同偏振依赖性来解释这种转变。明胶膜中嵌入的DNA包裹纳米管的进行研究表明了在聚合物基质内获得受控有序的生物相容性纳米管的简单方法。它可用于制造具有集成纳米电极的可相同的柔性自透明膜。

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