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Dramatic enhancement of double-walled carbon nanotube quality through a one-pot tunable purification method

机译:通过一锅可调纯化方法显着提高双壁碳纳米管质量

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摘要

The purification process we propose is a one-pot gas-phase treatment; the CNT powder is simply submittedudto a chlorine/oxygen atmosphere at around 1000 °C for 2 h. By varying the oxygen content in an excess of chlorine, the conditions were optimized in order to efficiently remove both metal (catalyst) and carbon impurities from DWCNT samples. Even if a high amount of sample is lost under the oxidative conditions used, a selective elimination of the carbon impurities obviously occurs and a metal impurity removal yield of 99% is obtained from thermogravimetry. Based on a multi-technique approach, we show that the purified DWCNTs are of high structural quality without any surface functionalization. This improvement of the wall quality through the chlorine/oxygen action is seen in particular with a divisionudby 15 of the D over G band intensity of the Raman spectra. Among the existing procedures, the advantages of our purification method are indisputably its simplicity, low time-consuming and high efficiency combined with an enhanced quality of the purified CNTs. Such quasi-pure DWCNTs have high interest since they offer a unique opportunity to study the intrinsic properties and effects of the nanotubes themselves.
机译:我们提出的净化过程是一锅法气相处理。只需将碳纳米管粉末置于约1000°C的氯气/氧气气氛中2小时。通过改变过量氯气中的氧含量,对条件进行了优化,以有效地从DWCNT样品中去除金属(催化剂)和碳杂质。即使在所使用的氧化条件下损失大量样品,也明显发生了碳杂质的选择性消除,并且通过热重分析获得了99%的金属杂质去除率。基于多种技术方法,我们表明纯化的DWCNT具有高结构质量,没有任何表面功能化。通过氯/氧作用对壁质量的这种改善特别是通过在拉曼光谱的G带强度上D除以15而得到。在现有程序中,我们的纯化方法的优势无疑是它的简单性,低耗时和高效率,以及纯化后的CNT的质量提高。这样的准纯DWCNT具有很高的兴趣,因为它们提供了一个独特的机会来研究纳米管本身的固有特性和作用。

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