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The purification of HiPco SWCNTs with liquid bromine at room temperature

机译:在室温下用液体溴纯化HiPco SWCNT

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摘要

A new procedure to purify HiPco single-walled carbon nanotubes (SWCNTs) from iron catalyst impurity is introduced. The protocol, which uses liquid bromine at room temperature (RT) as an oxidant, improves nanotube purity from iron by a factor of approximately 10, while maintaining good nanotube integrity as demonstrated by near infrared (NIR) luminescence and absorbance measurements. When HiPco SWCNTs are dissolved in RT Br_2(1) (free of O_2 and H_2O), the metallic iron impurity is quickly oxidized to its bromide salt and easily removed by aqueous washing or by washing with dilute acid. The iron content (by ICP-AE) for the purified SWCNT material was 2.8-3.6 percent by weight (for three different samples) for a single purification step, but could be lowered to 1.6-1.8 percent with an additional purification cycle. Characterization of the resulting purified SWCNT material has been achieved by TEM imaging, XPS, ICP-AE analysis, Raman spectroscopy, electronic absorption spectroscopy, and by NIR photoluminescence measurements. Finally, the new Br_2(l) purification procedure has been compared to and contrasted with other established purification procedures for HiPco SWCNTs and found to be a highly desirable alternative.
机译:介绍了一种从铁催化剂杂质中纯化HiPco单壁碳纳米管(SWCNT)的新方法。该协议使用室温(RT)的液态溴作为氧化剂,该协议将铁的纳米管纯度提高了约10倍,同时保持了近红外(NIR)发光和吸光度测量所显示的良好纳米管完整性。当HiPco SWCNT溶解在RT Br_2(1)(不含O_2和H_2O)中时,金属铁杂质迅速被氧化成其溴化物盐,很容易通过水洗或稀酸洗涤除去。对于单个纯化步骤,纯化的SWCNT材料的铁含量(通过ICP-AE)为2.8-3.6%(重量)(对于三个不同的样品),但通过额外的纯化循环,铁含量可降低至1.6-1.8%。通过TEM成像,XPS,ICP-AE分析,拉曼光谱,电子吸收光谱和近红外光致发光测量,可以对所得的纯化SWCNT材料进行表征。最后,将新的Br_2(1)纯化程序与HiPco SWCNT的其他已建立的纯化程序进行了比较,并发现它是非常理想的替代方法。

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