Perspectives of Single-Wall Carbon Nanotube Production in the Arc Discharge Process

碳纳米管 电弧 石墨 材料科学 蒸发 催化作用 纳米技术 原材料 富勒烯 碳纤维 金属 生产(经济) 制作 化学工程 工艺工程 冶金 电极 复合材料 化学 有机化学 物理化学 经济 病理 宏观经济学 工程类 替代医学 物理 复合数 热力学 医学
作者
А. В. Крестинин,N.A. Kiselev,A. V. Raevskii,A. G. Ryabenko,D.N. Zakharov,Г. И. Зверева
出处
期刊:Eurasian Chemico-Technological Journal [Institute of Combustion Problems]
卷期号:5 (1): 7-7 被引量:56
标识
DOI:10.18321/ectj583
摘要

<p>Single-wall carbon nanotubes (SWNTs) promise wide applications in many technical fields. As a result purified SWNT material is sold now on the West market at more than $1000 per 1 gram. Thus developing an effective technology for SWNTs production rises to a very important scientific problem. The perspectives of three existing methods providing raw material in the technology of SWNT production have been analyzed. They are i) pulsed laser evaporation of graphite/metal composites, ii) evaporation of graphite electrodes with metal content in the arc discharge process, and iii) catalytic decomposition of the mixture of CO and metal carbonyl catalyst precursor. The observed dynamics of SWNT market points to replacing the laser method of SWNTs production by the arc process. The conclusion has been made that the technology based on the arc process will be the major one for the fabrication of purified SWNTs at least for the next five years. A reliable estimation of a low price limit of SWNTs was derived from a comparison of two technologies based on the arc discharge process: the first one is the production of SWNTs and the second one is the production of a fullerene mixture С<sub>60</sub> + С<sub>70</sub>. The main conclusion was made that the price of purified SWNTs should always be more by 2-3 times the price of fullerene mixture. The parameters of a lab-scale technology for the production of purified SWNTs are listed. A large-scale application of the developed technology is expected to reduce the price of purified SWNTs by approximately ten times. The methods now employed for the characterization of products containing SWNTs are briefly observed. It is concluded that electron microscopy, thermogravimetric analysis, absorption and Raman spectroscopy, measurement of the specific surface aria, optical microscopy – each in separation is not enough for extensive characterization of a sample containing SWNTs, and all these methods should be used together.</p>
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