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Light-Induced Sulfur Transport inside Single-Walled Carbon Nanotubes

机译:单壁碳纳米管内的光诱导硫传输。

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摘要

Filling of single-walled carbon nanotubes (SWCNTs) and extraction of the encapsulated species from their cavities are perspective treatments for tuning the functional properties of SWCNT-based materials. Here, we have investigated sulfur-modified SWCNTs synthesized by the ampoule method. The morphology and chemical states of carbon and sulfur were analyzed by transmission electron microscopy, Raman scattering, thermogravimetric analysis, X-ray photoelectron and near-edge X-ray absorption fine structure spectroscopies. Successful encapsulation of sulfur inside SWCNTs cavities was demonstrated. The peculiarities of interactions of SWCNTs with encapsulated and external sulfur species were analyzed in details. In particular, the donor–acceptor interaction between encapsulated sulfur and host SWCNT is experimentally demonstrated. The sulfur-filled SWCNTs were continuously irradiated with polychromatic photon beam of high intensity. Comparison of X-ray spectra of the samples before and after the treatment revealed sulfur transport from the interior to the surface of SWCNTs bundles, in particular extraction of sulfur from the SWCNT cavity. These results show that the moderate heating of filled nanotubes could be used to de-encapsulate the guest species tuning the local composition, and hence, the functional properties of SWCNT-based materials.
机译:填充单壁碳纳米管(SWCNT)以及从其腔中提取被封装的物质是调整SWCNT基材料功能特性的透视方法。在这里,我们研究了通过安瓿法合成的硫改性SWCNT。通过透射电子显微镜,拉曼散射,热重分析,X射线光电子和近边缘X射线吸收精细结构光谱学分析了碳和硫的形态和化学状态。证实了硫在SWCNTs腔内的成功封装。详细分析了SWCNT与包封的硫和外部硫的相互作用的特殊性。特别是,实验证明了包封的硫与主体SWCNT之间的供体-受体相互作用。用高强度的多色光子束连续照射充满硫​​的SWCNT。处理前后样品的X射线光谱比较表明,硫从SWCNTs束的内部传输到表面,特别是从SWCNT腔中提取硫。这些结果表明,填充纳米管的适度加热可用于解封客体物种,从而调节局部组成,从而改善基于SWCNT的材料的功能特性。

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