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Purification of single walled carbon nanotubes by thermal gas phase oxidation

机译:热气相氧化法纯化单壁碳纳米管

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摘要

Single walled carbon nanotubes (SWNT) have been produced in an electric arc discharge by using a graphite rod as anode which is filled with a powder mixture of graphite and metallic catalysts like nickel and yttrium. The soot material containing approximately a third of SWNT was collected from the cathode region as a soft, voluminous material. the main by-products in this process are amorphous carbon and graphitic nanoparticles which have to be removed by an appropriate purification process. The as-produced soot material was purified by gas phase oxidation in air at 355 deg C. The oxidation of amorphous carbon in air is advantageous against wet chemical methods because it is better controllable. Thermogravimetric analysis and electron microscopy were used to investigate the oxidation behavior of the different kinds of carbon. Oxidation of SWNT and amorphous carbon occurs simultaneously even at moderate temperatures, whereas amorphous carbon is more rapidly oxidized than SWNT. For optimizing the purification procedure by gas phase oxidation, kinetic studies were used to determine the oxidation time for each component in the soot at a given temperature. So it is possible to remove the amorphous carbon quantitatively with minimal losses of SWNT. But it was found that graphitic nanoparticles have the highest stability against oxidation and could therefore not be quantitatively removed by this method without the complete destruction of SWNT. Therefore, the electric arc discharge process has to be a controlled process for minimum production of graphitic nanoparticles to obtain a material with a high content of SWNT.
机译:通过使用石墨棒作为阳极在电弧放电中生产单壁碳纳米管(SWNT),石墨棒填充了石墨与金属催化剂(如镍和钇)的粉末混合物。从阴极区域收集含有约三分之一SWNT的烟灰材料,为柔软的大体积材料。此过程中的主要副产物是无定形碳和石墨纳米颗粒,必须通过适当的纯化过程将其除去。所产生的烟灰材料通过在355℃的空气中进行气相氧化来纯化。空气中无定形碳的氧化相对于湿化学方法是有利的,因为它可更好地控制。用热重分析和电子显微镜研究了各种碳的氧化行为。即使在中等温度下,SWNT和无定形碳也会同时发生氧化,而无定形碳比SWNT氧化得更快。为了通过气相氧化优化纯化程序,使用动力学研究确定了给定温度下烟灰中每种成分的氧化时间。因此有可能以最小的SWNT损失定量去除非晶碳。但是发现,石墨纳米颗粒具有最高的抗氧化稳定性,因此,如果不完全破坏SWNT,就不能通过这种方法定量地除去。因此,电弧放电过程必须是用于最小化石墨纳米颗粒的生产以获得具有高含量的SWNT的材料的受控过程。

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