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Modification of nanofibrous carbon morphology under effect of laser ablation

Kuvshinov, G. G.; Krutskii, Yu L.; Chukanov, I. S.; Orishich, A. M.; Afonin, Yu V.; Zaikovskii, V. I.; Kuvshinov, D. G.

Authors

G. G. Kuvshinov

Yu L. Krutskii

I. S. Chukanov

A. M. Orishich

Yu V. Afonin

V. I. Zaikovskii



Abstract

This paper presents the results of studies of carbon nanostructures obtained by the laser ablation of a nanofibrous carbon formed in the process of a catalytic decomposition of hydrocarbons in the presence of high-percentage catalysts containing the iron subgroup of metals. A continuous CO2 laser with a radiation density of 3. 4 W/cm2 was used in the experiments. The target was placed on a cooled copper substrate in a helium medium under a pressure of 770-780 torr. Upon the impact of laser radiation, the carbon evaporated and, further, condensed on the surface of a special condenser. The samples were collected from the condenser surface and the target in the radiation-exposed area. The products were studied by high resolution transmission electron microscopy using a JEM-2010 electron microscope. A number of samples underwent a local energy dispersion X-ray microanalysis on the EDAX spectrometer. Multilayer nanotubes of diameters 14-40 nm and lengths of up to 2 μm have been found in the evaporated and condensed carbon materials. It was established that part of the nanotubes was filled by the catalyst metal. Interestingly, in the target area exposed to the radiation, the initial material comprising carbon nanofibers with the structure of inserted cones transformed into carbon nanotubes (CNTs) with an average cross-section size of 20 nm. © 2011 Pleiades Publishing, Ltd.

Citation

Kuvshinov, G. G., Krutskii, Y. L., Chukanov, I. S., Orishich, A. M., Afonin, Y. V., Zaikovskii, V. I., & Kuvshinov, D. G. (2011). Modification of nanofibrous carbon morphology under effect of laser ablation. Nanotechnologies in Russia, 6(9-10), 607-612. https://doi.org/10.1134/S1995078011050107

Journal Article Type Article
Acceptance Date Jun 8, 2011
Online Publication Date Oct 13, 2011
Publication Date Oct 1, 2011
Deposit Date Apr 21, 2022
Journal Nanotechnologies in Russia
Print ISSN 1995-0780
Electronic ISSN 1995-0799
Publisher Springer Verlag
Peer Reviewed Peer Reviewed
Volume 6
Issue 9-10
Article Number 607 (2011)
Pages 607-612
DOI https://doi.org/10.1134/S1995078011050107
Keywords Laser Ablation; High Resolution Transmission Electron Microscopy; Carbon Nanofibers; Condenser Surface; Round Cross Section
Public URL https://hull-repository.worktribe.com/output/3591665