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Magnetic-field-enhanced synthesis of single-wall carbon nanotubes in arc discharge.

Authors :
Keidar, Michael
Levchenko, Igor
Arbel, Tamir
Alexander, Myriam
Waas, Anthony M.
Ostrikov, Kostya Ken
Source :
Journal of Applied Physics. May2008, Vol. 103 Issue 9, p094318. 8p. 6 Diagrams, 4 Graphs.
Publication Year :
2008

Abstract

The ability to control the properties of single-wall nanotubes (SWNTs) produced in the arc discharge is important for many practical applications. Our experiments suggest that the length of SWNTs significantly increases (up to 4000 nm), along with the purity of the carbon deposit, when the magnetic field is applied to arc discharge. Scanning electron microscopy and transmission electron microscopy analyses have demonstrated that the carbon deposit produced in the magnetic-field-enhanced arc mainly consists of the isolated and bunched SWNTs. A model of a carbon nanotube interaction and growth in the thermal plasma was developed, which considers several important effects such as anode ablation that supplies the carbon plasma in an anodic arc discharge technique, and the momentum, charge, and energy transfer processes between nanotube and plasma. It is shown that the nanotube charge with respect to the plasma as well as nanotube length depend on plasma density and electric field in the interelectrode gap. For instance, nanotube charge changes from negative to positive value with an electron density decrease. The numerical simulations based on the Monte Carlo technique were performed, which explain an increase in the nanotubes produced in the magnetic-field-enhanced arc discharge. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00218979
Volume :
103
Issue :
9
Database :
Academic Search Index
Journal :
Journal of Applied Physics
Publication Type :
Academic Journal
Accession number :
32078891
Full Text :
https://doi.org/10.1063/1.2919712