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Two-dimensional diffusion-ordered NMR spectroscopy as a tool for monitoring functionalized carbon nanotube purification and composition

机译:二维扩散有序NMR光谱作为监测功能化碳纳米管纯化和组成的工具

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摘要

Functionalized carbon nanotube (CNT) derivatives are currently under thorough investigation in different biomedical investigations. In this field of research, the composition of sample either in terms of covalently attached or physisorbed moieties can greatly affect the observed results and hamper the comparison between different studies. Therefore, the availability of a fast and reliable analytical technique to assess both the type of interaction (covalent vs noncovalent) and the composition of CNT conjugates is of great importance. Here we describe that the two-dimensional diffusion-ordered (DOSY) NMR spectroscopy is extremely useful to discriminate between conjugated and unconjugated polyethylene glycol groups in samples obtained by condensation with oxidized single-walled carbon nanotubes (SWNTs). This fast and nondestructive technique allows us to follow the removal of unconjugated polyethylene glycol chains during the purification. In particular, DOSY analysis reveal that about ~1/_3 (wt %) of the polyethylene glycol used for the condensation remained physisorbed to functionalized SWNTs after dialysis. Complete elimination of physisorbed polyethylene glycol was achieved using diafiltration.
机译:目前,在不同的生物医学研究中,对官能化碳纳米管(CNT)衍生物进行了深入研究。在该研究领域中,以共价连接或物理吸附的部分表示的样品组成会极大地影响观察到的结果,并妨碍不同研究之间的比较。因此,提供一种快速可靠的分析技术来评估相互作用类型(共价与非共价)和CNT共轭物的组成非常重要。在这里,我们描述了二维扩散有序(DOSY)NMR光谱对于区分通过与氧化单壁碳纳米管(SWNTs)缩合获得的样品中的共轭聚乙二醇基团和非共轭聚乙二醇基团非常有用。这种快速且无损的技术使我们能够在纯化过程中跟踪未结合的聚乙二醇链的去除。特别地,DOSY分析显示,用于缩合的聚乙二醇的约1 / _3(wt%)在透析后仍然物理吸附到官能化的SWNT上。使用渗滤可以完全消除物理吸附的聚乙二醇。

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