Microwave plasma-enhanced chemical vapour deposition growth of carbon nanostructures
The effect of various input parameters on the production of carbon nanostructures using a simple microwave plasma-enhanced chemical vapour deposition technique has been investigated. The technique utilises a conventional microwave oven as the microwave energy source. The developed apparatus is inex...
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doaj-51f6ec5c18d146c59544ab8a4c70dc182021-04-04T20:06:06ZengAcademy of Science of South AfricaSouth African Journal of Science1996-74892010-03-011065/6Microwave plasma-enhanced chemical vapour deposition growth of carbon nanostructuresShivan Singh0Leigh Jarvis1School of Electrical, Electronic and Computer Engineering, University of KwaZulu-NatalSchool of Electrical, Electronic and Computer Engineering, University of KwaZulu-NatalThe effect of various input parameters on the production of carbon nanostructures using a simple microwave plasma-enhanced chemical vapour deposition technique has been investigated. The technique utilises a conventional microwave oven as the microwave energy source. The developed apparatus is inexpensive and easy to install and is suitable for use as a carbon nanostructure source for potential laboratory-based research of the bulk properties of carbon nanostructures. A result of this investigation is the reproducibility of specific nanostructures with the variation of input parameters, such as carbon-containing precursor and support gas flow rate. It was shown that the yield and quality of the carbon products is directly controlled by input parameters. Transmission electron microscopy and scanning electron microscopy were used to analyse the carbon products; these were found to be amorphous, nanotubes and onion-like nanostructures.http://192.168.0.118/index.php/sajs/article/view/9961amorphous carbon reductioncarbon nanotubeshydrogen- to-carbon ratiomicrowave plasma- enhanced chemical vapour depositionnanostructures |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Shivan Singh Leigh Jarvis |
spellingShingle |
Shivan Singh Leigh Jarvis Microwave plasma-enhanced chemical vapour deposition growth of carbon nanostructures South African Journal of Science amorphous carbon reduction carbon nanotubes hydrogen- to-carbon ratio microwave plasma- enhanced chemical vapour deposition nanostructures |
author_facet |
Shivan Singh Leigh Jarvis |
author_sort |
Shivan Singh |
title |
Microwave plasma-enhanced chemical vapour deposition growth of carbon nanostructures |
title_short |
Microwave plasma-enhanced chemical vapour deposition growth of carbon nanostructures |
title_full |
Microwave plasma-enhanced chemical vapour deposition growth of carbon nanostructures |
title_fullStr |
Microwave plasma-enhanced chemical vapour deposition growth of carbon nanostructures |
title_full_unstemmed |
Microwave plasma-enhanced chemical vapour deposition growth of carbon nanostructures |
title_sort |
microwave plasma-enhanced chemical vapour deposition growth of carbon nanostructures |
publisher |
Academy of Science of South Africa |
series |
South African Journal of Science |
issn |
1996-7489 |
publishDate |
2010-03-01 |
description |
The effect of various input parameters on the production of carbon nanostructures using a simple microwave plasma-enhanced chemical vapour deposition technique has been investigated. The technique utilises a conventional microwave oven as the microwave energy source. The developed apparatus is inexpensive and easy to install and is suitable for use as a carbon nanostructure source for potential laboratory-based research of the bulk properties of carbon nanostructures. A result of this investigation is the reproducibility of specific nanostructures with the variation of input parameters, such as carbon-containing precursor and support gas flow rate. It was shown that the yield and quality of the carbon products is directly controlled by input parameters. Transmission electron microscopy and scanning electron microscopy were used to analyse the carbon products; these were found to be amorphous, nanotubes and onion-like nanostructures. |
topic |
amorphous carbon reduction carbon nanotubes hydrogen- to-carbon ratio microwave plasma- enhanced chemical vapour deposition nanostructures |
url |
http://192.168.0.118/index.php/sajs/article/view/9961 |
work_keys_str_mv |
AT shivansingh microwaveplasmaenhancedchemicalvapourdepositiongrowthofcarbonnanostructures AT leighjarvis microwaveplasmaenhancedchemicalvapourdepositiongrowthofcarbonnanostructures |
_version_ |
1721541428778106880 |