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Synthesis and characterization of water-soluble carbon nanotubes from mustard soot

机译:芥菜烟灰水溶性碳纳米管的合成与表征

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Carbon nanotubes (CNT) has been synthesized by pyrolysing mustard oil using an oil lamp. It was made water-soluble (wsCNT) through oxidative treatment by dilute nitric acid and was characterized by SEM, AFM, XRD, Raman and FTIR spectroscopy. The synthesized wsCNT showed the presence of several junctions and defects in it. The presence of curved graphene structure (sp2) with frequent sp3 hybridized carbon is found to be responsible for the observed defects. These defects along with the presence of di- and tri-podal junctions showed interesting magnetic properties of carbon radicals formed by spin frustration. This trapped carbon radical showed ESR signal in aqueous solution and was very stable even under drastic treatment by strong oxidizing or reducing agents. Oxidative acid treatment of CNT introduced several carboxylic acid group functionalities in wsCNT along with the nicking of the CNT at different lengths with varied molecular weight. To evaluate molecular weights of these wsCNTs, an innovative method like gel electrophoresis using high molecular weight DNA as marker was introduced.
机译:通过使用油灯热解聚的芥菜油已经合成了碳纳米管(CNT)。通过稀硝酸通过氧化处理使水溶性(WSCNT)制成水溶性(WSCNT),其特征在于SEM,AFM,XRD,拉曼和FTIR光谱。合成的WSCNT显示出几个结和缺陷的存在。发现具有频繁SP3杂交碳的弯曲石墨烯结构(SP2)负责观察到的缺陷。这些缺陷随着二瓣和三瓣和三瓣孔隙的存在而显示出通过旋转挫折而形成的碳自由基的有趣磁性。这种被捕获的碳基团在水溶液中显示ESR信号,即使通过强氧化或还原剂的激烈处理也非常稳定。 CNT的氧化酸处理在WSCNT中引入了几种羧酸基团官能团以及CNT在不同的分子量下的不同长度的切口。为了评估这些WSCNT的分子量,引入了作为标记物的高分子量DNA的凝胶电泳等创新方法。

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