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Production of high purity multi-walled carbon nanotubes produced from catalytic decomposition of methane

机译:由甲烷催化分解产生的高纯度多壁碳纳米管

摘要

Removing all the impurities in the carbon nanotubes is essential due to the unique characteristic of purified carbon nanotubes applications such as electronic devices, hydrogen storage, tools in nanotechnology, polymer reinforcement, fuel cells, sensors and actuators. However, the removal of some catalysts is very difficult. Carbon nanotubes, which were used for purification, were synthesized using Ni/TiO2 catalyst. The main impurity of the assynthesized carbon nanotubes that needs to be removed was the catalyst used to synthesized carbon nanotubes. In order to purify this carbon nanotube, nitric acid treatment followed by oxidation either chemical or thermal method has been used and the results have been compared. Acid treatment followed by thermal oxidation was more effective than acid treatment followed by chemical oxidation. The process again was compared with thermal oxidation followed by acid treatment. It was found that the thermal oxidation followed by acid treatment gave better result than acid treatment followed by thermal oxidation. The efficiency of oxidation followed by nitric or sulfuric acid treatment followed by re-oxidation also were tested and found that this method has successfully removed most of the impurities. The purity of the oxidation followed by sulfuric acid treatment then re-oxidation gave carbon nanotube with purity as high as 99.9 wt%. The percentage of the carbon nanotubes purity was obtained from Thermal Gravimetric Analysis (TGA) while the structure and morphology of carbon nanotubes were characterized using Scanning Electron Microscopy (SEM) and Transmission Electron Microscopy (TEM). TEM and SEM showed that the structure of the carbon nanotubes was not damage after purification using oxidation followed by sulfuric acid treatment and then re-oxidation.
机译:由于纯化的碳纳米管应用(例如电子设备,储氢,纳米技术工具,聚合物增强,燃料电池,传感器和执行器)的独特特性,因此必须去除碳纳米管中的所有杂质。但是,去除某些催化剂是非常困难的。使用Ni / TiO2催化剂合成了用于纯化的碳纳米管。需要去除的合成碳纳米管的主要杂质是用于合成碳纳米管的催化剂。为了纯化该碳纳米管,使用了硝酸处理,然后化学或热氧化的方法,并比较了结果。酸处理再热氧化比酸处理再化学氧化更有效。再次将该过程与热氧化然后酸处理进行比较。已经发现,热氧化后进行酸处理比酸处理后进行热氧化得到更好的结果。还测试了氧化,硝酸或硫酸处理,再氧化的效率,发现该方法已成功去除了大部分杂质。氧化的纯度,然后进行硫酸处理,然后再氧化,得到纯度高达99.9重量%的碳纳米管。通过热重分析(TGA)获得碳纳米管纯度的百分比,同时使用扫描电子显微镜(SEM)和透射电子显微镜(TEM)表征碳纳米管的结构和形态。 TEM和SEM显示,使用氧化,硫酸处理,再氧化后的碳纳米管的结构没有被破坏。

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