Growth of wall-controlled MWCNTs by magnetic field assisted arc discharge plasma

Carbon nanotubes have long attracted great scientific interest because of their simplicity, ease of synthesis and unique properties. The novel properties of nanostructured carbon nanotubes including its high surface area, stiffness, tensile strength, thermal and electrical properties which become su...

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Main Authors: Roslan, M. S., Chaudhary, K. T., Doylend, N., Agam, A., Kamarulzaman, R., Haider, Z., Mazalan, E., Ali, J.
Format: Article
Language:English
Published: Elsevier B.V. 2019
Subjects:
Online Access:http://eprints.utm.my/id/eprint/89221/1/MSRoslan2019_GrowthofWallControlledMWCNTsbyMagneticField.pdf
http://eprints.utm.my/id/eprint/89221/
http://dx.doi.org/10.1016/j.jscs.2018.06.003
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Institution: Universiti Teknologi Malaysia
Language: English
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spelling my.utm.892212021-02-22T06:01:03Z http://eprints.utm.my/id/eprint/89221/ Growth of wall-controlled MWCNTs by magnetic field assisted arc discharge plasma Roslan, M. S. Chaudhary, K. T. Doylend, N. Agam, A. Kamarulzaman, R. Haider, Z. Mazalan, E. Ali, J. Q Science (General) Carbon nanotubes have long attracted great scientific interest because of their simplicity, ease of synthesis and unique properties. The novel properties of nanostructured carbon nanotubes including its high surface area, stiffness, tensile strength, thermal and electrical properties which become suitable for the application in the fields of energy storage, hydrogen storage, electrochemical supercapacitor, field-emitting devices, transistors, nanoprobes and sensors, composite material, templates, etc. In this study, carbon nanotubes were synthesized through arc discharge plasma with two different configurations, transverse and axial field, applied across arc plasma synthesis process to enable a much rapid rate growing of tubular carbon multi-walled carbon nanotubes (MWCNTs). TEM, FESEM, RAMAN, FTIR and XRD were used to investigate the morphology and structural evolution of the MWCNT samples produced with different synthesis environment. Introduction of magnetic field during the MWCNTs synthesized through arc discharge plasma technique has also been found to enhance the carbon nanotube growth, increase the high aspect ratio and its chemical stability, and shows potential for regulating the number of walls formed. Elsevier B.V. 2019-02 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/89221/1/MSRoslan2019_GrowthofWallControlledMWCNTsbyMagneticField.pdf Roslan, M. S. and Chaudhary, K. T. and Doylend, N. and Agam, A. and Kamarulzaman, R. and Haider, Z. and Mazalan, E. and Ali, J. (2019) Growth of wall-controlled MWCNTs by magnetic field assisted arc discharge plasma. Journal of Saudi Chemical Society, 23 (2). pp. 171-181. ISSN 1319-6103 http://dx.doi.org/10.1016/j.jscs.2018.06.003 DOI:10.1016/j.jscs.2018.06.003
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic Q Science (General)
spellingShingle Q Science (General)
Roslan, M. S.
Chaudhary, K. T.
Doylend, N.
Agam, A.
Kamarulzaman, R.
Haider, Z.
Mazalan, E.
Ali, J.
Growth of wall-controlled MWCNTs by magnetic field assisted arc discharge plasma
description Carbon nanotubes have long attracted great scientific interest because of their simplicity, ease of synthesis and unique properties. The novel properties of nanostructured carbon nanotubes including its high surface area, stiffness, tensile strength, thermal and electrical properties which become suitable for the application in the fields of energy storage, hydrogen storage, electrochemical supercapacitor, field-emitting devices, transistors, nanoprobes and sensors, composite material, templates, etc. In this study, carbon nanotubes were synthesized through arc discharge plasma with two different configurations, transverse and axial field, applied across arc plasma synthesis process to enable a much rapid rate growing of tubular carbon multi-walled carbon nanotubes (MWCNTs). TEM, FESEM, RAMAN, FTIR and XRD were used to investigate the morphology and structural evolution of the MWCNT samples produced with different synthesis environment. Introduction of magnetic field during the MWCNTs synthesized through arc discharge plasma technique has also been found to enhance the carbon nanotube growth, increase the high aspect ratio and its chemical stability, and shows potential for regulating the number of walls formed.
format Article
author Roslan, M. S.
Chaudhary, K. T.
Doylend, N.
Agam, A.
Kamarulzaman, R.
Haider, Z.
Mazalan, E.
Ali, J.
author_facet Roslan, M. S.
Chaudhary, K. T.
Doylend, N.
Agam, A.
Kamarulzaman, R.
Haider, Z.
Mazalan, E.
Ali, J.
author_sort Roslan, M. S.
title Growth of wall-controlled MWCNTs by magnetic field assisted arc discharge plasma
title_short Growth of wall-controlled MWCNTs by magnetic field assisted arc discharge plasma
title_full Growth of wall-controlled MWCNTs by magnetic field assisted arc discharge plasma
title_fullStr Growth of wall-controlled MWCNTs by magnetic field assisted arc discharge plasma
title_full_unstemmed Growth of wall-controlled MWCNTs by magnetic field assisted arc discharge plasma
title_sort growth of wall-controlled mwcnts by magnetic field assisted arc discharge plasma
publisher Elsevier B.V.
publishDate 2019
url http://eprints.utm.my/id/eprint/89221/1/MSRoslan2019_GrowthofWallControlledMWCNTsbyMagneticField.pdf
http://eprints.utm.my/id/eprint/89221/
http://dx.doi.org/10.1016/j.jscs.2018.06.003
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