热解法合成直、螺旋碳纳米管的特点

O. Zolotarenko, A. Zolotarenko, E. Rudakova, N. Akhanova, M. Ualkhanova, D. V. Schur, M. Gabdullin, T. Myronenko, A. Zolotarenko, M. Chymbai, I. Zagorulko, O. Havryliuk
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引用次数: 1

摘要

研究工作的目的是热解合成直径大致相同的直线型和螺旋形碳纳米管,并对其进行综合分析。为了解决这一问题,设计了一种新型的碳纳米结构热解合成装置,该装置在每个聚变过程中都可以有自己的相对于反应堆轴的经典水平位置的角度。该反应器使制备直径为15 ~ 60nm的螺旋形多壁碳纳米管聚集体和直径为5 ~ 60nm的直线型多壁碳纳米管成为可能。垂直反应器热解合成碳纳米结构的研究,为定向合成具有一定直径和转距的螺旋形纳米管提供了技术途径。作为工作的一部分,本文还考虑并提出了螺旋多壁碳纳米管形成的新机制,这对其进一步的工业合成和在相关复合材料中的应用具有重要意义。提出了一种热解法合成碳纳米结构的条件方案。在工作中进行了热分析,记录了两种不同的低热稳定性结构(可能是无定形碳和更高的碳氢化合物)的存在。利用扫描电镜和透射电镜观察,在反应器的垂直位置可以观察到直径为15-60 nm的螺旋状纳米纤维的形成,在反应器的水平位置可以观察到直径为5 - 60 nm的直线状和微弯曲的mwct的形成。拉曼光谱证实了两种合成产物中存在多层碳管结构,即MWCT。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Features of the synthesis of straight and spiral carbon nanotubes by the pyrolytic method
The goal of the research work was the pyrolytic synthesis of straight and spiral carbon nanotubes of approximately the same diameter, as well as their comprehensive analysis. To solve the given problem, a new installation for the pyrolytic synthesis of carbon nanostructures (CNS) with a fusion reactor, which for each fusion process can have its own angle relative to the classical horizontal position of the reactor axis. This reactor made it possible to develop a method for obtaining conglomerates of spiral-shaped multi-walled carbon nanotubes with a diameter of 15–60 nm and to synthesize straight multi-walled carbon nanotubes with a diameter of 5 to 60 nm. The research of pyrolytic synthesis of carbon nanostructures in a vertical reactor allows to work out the technology of purposeful synthesis of nanotubes that have a spiral shape with a certain diameter and pitch of the turn. As part of the work, a new mechanism for the formation of spiral multi-walled carbon nanotubes is also considered and proposed, which is important for their further industrial synthesis and their use in related composites. A scheme is proposed of conditions for the synthesis of carbon nanostructures by the pyrolytic method. Thermal analysis was carried out in the work, which recorded the presence of two different structures with low thermal stability (probably amorphous carbon and higher hydrocarbons). When using scanning and transmission electron microscopy, the formation of spiral nanofibers with a diameter of 15–60 nm in the vertical position of the reactor was recorded, and in the horizontal position of the reactor, the formation of straight and slightly curved MWCTs with a diameter of nanofibers from 5 to 60 nm was found. Raman spectroscopy confirms the presence of multi-layered carbon tubular formation, i.e. MWCT, in both synthesis products.
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