Catalyst effect on carbon nanomaterials production by chemical vapor deposition

Carbon nanomaterials (CNMs) such as carbon nanotubes (CNTs) and carbon nanofibers (CNFs) have attract many interests due to their unique mechanical, chemical, electrical, magnetic, thermal and other properties. They have been applied in various fields such as electronics, medicine and catalysis. Int...

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Main Authors: Hazan, Mohammad Adib, Hasmuei, Ellyanie Balqis, Guma, Mackinley Bujang, Mamat @ Mat Nazir, Md Shuhazlly, Yaakob, Yazid
Format: Conference or Workshop Item
Language:English
Published: 2017
Online Access:http://psasir.upm.edu.my/id/eprint/64413/1/MST%20poster%20111117%208.pdf
http://psasir.upm.edu.my/id/eprint/64413/
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spelling my.upm.eprints.644132018-07-05T09:28:45Z http://psasir.upm.edu.my/id/eprint/64413/ Catalyst effect on carbon nanomaterials production by chemical vapor deposition Hazan, Mohammad Adib Hasmuei, Ellyanie Balqis Guma, Mackinley Bujang Mamat @ Mat Nazir, Md Shuhazlly Yaakob, Yazid Carbon nanomaterials (CNMs) such as carbon nanotubes (CNTs) and carbon nanofibers (CNFs) have attract many interests due to their unique mechanical, chemical, electrical, magnetic, thermal and other properties. They have been applied in various fields such as electronics, medicine and catalysis. Intense research effort have been undertaken to synthesis CNTs at a reasonable cost. Currently chemical vapor deposition (CVD) is the most widely used method, which is promising way for large scale production and high purity of CNMs at low cost and easy to handle. Catalyst used in CVD method give high significant role in determination of the yield and the types of CNTs produced. Iron oxide (Fe2O3) and nickel oxide (NiO) powder have been used to investigate the growth of CNMs. The samples were growth by using methanol as a precursor at temperature 700 °C for 30 minutes deposition time. As a result, CNTs can be found grow at small size of catalyst (less 10 nm). Bigger size of catalyst (above 20 nm) lead to encapsulated of metal carbide. Amorphous carbon was formed around the catalyst that have size in micro scale. All sample were analyzed using high resolution transmission electron microscopy (HRTEM) images and energy dispersive X-ray (EDX). Thus, the study of catalyst during CVD process are important for a better understanding of CNM growth. 2017 Conference or Workshop Item PeerReviewed text en http://psasir.upm.edu.my/id/eprint/64413/1/MST%20poster%20111117%208.pdf Hazan, Mohammad Adib and Hasmuei, Ellyanie Balqis and Guma, Mackinley Bujang and Mamat @ Mat Nazir, Md Shuhazlly and Yaakob, Yazid (2017) Catalyst effect on carbon nanomaterials production by chemical vapor deposition. In: 5th International Symposium on Applied Engineering and Sciences (SAES2017), 14-15 Nov. 2017, Universiti Putra Malaysia. (p. 8).
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
description Carbon nanomaterials (CNMs) such as carbon nanotubes (CNTs) and carbon nanofibers (CNFs) have attract many interests due to their unique mechanical, chemical, electrical, magnetic, thermal and other properties. They have been applied in various fields such as electronics, medicine and catalysis. Intense research effort have been undertaken to synthesis CNTs at a reasonable cost. Currently chemical vapor deposition (CVD) is the most widely used method, which is promising way for large scale production and high purity of CNMs at low cost and easy to handle. Catalyst used in CVD method give high significant role in determination of the yield and the types of CNTs produced. Iron oxide (Fe2O3) and nickel oxide (NiO) powder have been used to investigate the growth of CNMs. The samples were growth by using methanol as a precursor at temperature 700 °C for 30 minutes deposition time. As a result, CNTs can be found grow at small size of catalyst (less 10 nm). Bigger size of catalyst (above 20 nm) lead to encapsulated of metal carbide. Amorphous carbon was formed around the catalyst that have size in micro scale. All sample were analyzed using high resolution transmission electron microscopy (HRTEM) images and energy dispersive X-ray (EDX). Thus, the study of catalyst during CVD process are important for a better understanding of CNM growth.
format Conference or Workshop Item
author Hazan, Mohammad Adib
Hasmuei, Ellyanie Balqis
Guma, Mackinley Bujang
Mamat @ Mat Nazir, Md Shuhazlly
Yaakob, Yazid
spellingShingle Hazan, Mohammad Adib
Hasmuei, Ellyanie Balqis
Guma, Mackinley Bujang
Mamat @ Mat Nazir, Md Shuhazlly
Yaakob, Yazid
Catalyst effect on carbon nanomaterials production by chemical vapor deposition
author_facet Hazan, Mohammad Adib
Hasmuei, Ellyanie Balqis
Guma, Mackinley Bujang
Mamat @ Mat Nazir, Md Shuhazlly
Yaakob, Yazid
author_sort Hazan, Mohammad Adib
title Catalyst effect on carbon nanomaterials production by chemical vapor deposition
title_short Catalyst effect on carbon nanomaterials production by chemical vapor deposition
title_full Catalyst effect on carbon nanomaterials production by chemical vapor deposition
title_fullStr Catalyst effect on carbon nanomaterials production by chemical vapor deposition
title_full_unstemmed Catalyst effect on carbon nanomaterials production by chemical vapor deposition
title_sort catalyst effect on carbon nanomaterials production by chemical vapor deposition
publishDate 2017
url http://psasir.upm.edu.my/id/eprint/64413/1/MST%20poster%20111117%208.pdf
http://psasir.upm.edu.my/id/eprint/64413/
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score 13.211869