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Colloidal stability of carbon nanotubes in an aqueous dispersion of phospholipid

机译:碳纳米管在磷脂水分散体中的胶体稳定性

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摘要

Within the family of nanomaterials, carbon nanotubes (CNTs) have emerged as a new efficient scaffold for studying molecular interactions at interfaces. Poor dispersability of CNTs in any solvent presents a considerable drawback for the development of novel functional composite structures. Previous studies have demonstrated that the solubility of CNTs can be greatly enhanced by employing appropriate surfactants, some of them being biological molecules. In this work, we study the noncovalent wrapping of lipid chains onto the graphitic surface of single-walled material (SWCNTs) by electron microscopy and Raman spectroscopy. Stable and homogenous aqueous suspensions of SWCNTs in the presence of lipids have been prepared, whereas their electrophoretic mobility was confirmed by ζ-potential measurements. Raman measurements revealed that smaller diameter SWCNTs are preferentially dispersed by lipid molecules in the aqueous supernatant part of the prepared suspension.
机译:在纳米材料家族中,碳纳米管(CNT)已经成为研究界面上分子相互作用的新型高效支架。碳纳米管在任何溶剂中的分散性差,对开发新型功能性复合结构构成了重大缺陷。先前的研究表明,通过使用适当的表面活性剂(其中一些是生物分子)可以大大提高CNT的溶解度。在这项工作中,我们通过电子显微镜和拉曼光谱研究脂质链在单壁材料(SWCNT)石墨表面上的非共价包裹。已经制备了在脂质存在下稳定且均匀的SWCNTs水性悬浮液,而其电泳迁移率通过ζ电位测量得到了证实。拉曼测量结果表明,较小直径的SWCNT被脂质分子优先分散在制备的悬浮液的水性上清液部分中。

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