Aligned Carbon Nanotube Growth from Chemical Vapor Deposition
Carbon nanomaterial especially CNT possesses remarkably significant achievements towards the development of sustainable energy storage applications. This article reviews aligned CNTs grown from CVD technique as electrode material in batteries and electrochemical capacitors. As compared to the entang...
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my.utem.eprints.136632015-05-28T04:33:15Z http://eprints.utem.edu.my/id/eprint/13663/ Aligned Carbon Nanotube Growth from Chemical Vapor Deposition Mohd Abid, Mohd Asyadi Azam Bistamam, Mohd Shahril Amin Abdul Manaf, Nor Syafira Mohamad, Effendi Q Science (General) Carbon nanomaterial especially CNT possesses remarkably significant achievements towards the development of sustainable energy storage applications. This article reviews aligned CNTs grown from CVD technique as electrode material in batteries and electrochemical capacitors. As compared to the entangled CNTs, aligned or well organized CNTs have advantages in specific surface area and ion accessibility in which, more electrolyte ions can access to CNT surfaces for better charge storage performance. CVD known as the most popular technique to produce CNTs enables the use of various substrates and CNT can grow in a variety of forms, such as powder, films, aligned or entangled. Also, CVD is a simple and economic technique, and has good controllability of direction and CNT dimension. High purity of as-grown CNTs is also another beauty of the CVD technique. The current trend and performance of devices utilizing CNTs as electrode material is also extensively discussed. 2014 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utem.edu.my/id/eprint/13663/1/11.0_Final_Paper_2304_%28Aligned_CNT%29.pdf Mohd Abid, Mohd Asyadi Azam and Bistamam, Mohd Shahril Amin and Abdul Manaf, Nor Syafira and Mohamad, Effendi (2014) Aligned Carbon Nanotube Growth from Chemical Vapor Deposition. In: Design and System Division Conference, 17-19 September 2014, Tokushima University. http://www.jsme.or.jp/event/detail.php?id=2878 |
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Q Science (General) Mohd Abid, Mohd Asyadi Azam Bistamam, Mohd Shahril Amin Abdul Manaf, Nor Syafira Mohamad, Effendi Aligned Carbon Nanotube Growth from Chemical Vapor Deposition |
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Carbon nanomaterial especially CNT possesses remarkably significant achievements towards the development of sustainable energy storage applications. This article reviews aligned CNTs grown from CVD technique as electrode material in batteries and electrochemical capacitors. As compared to the entangled CNTs, aligned or well organized CNTs have advantages in specific surface area and ion accessibility in which, more electrolyte ions can access to CNT surfaces for better charge storage performance. CVD known as the most popular technique to produce CNTs enables the use of various substrates and CNT can grow in a variety of forms, such as powder, films, aligned or entangled. Also, CVD is a simple and economic technique, and has good controllability of direction and CNT dimension. High purity of as-grown CNTs is also another beauty of the CVD technique. The current trend and performance of devices utilizing CNTs as electrode material is also extensively discussed. |
format |
Conference or Workshop Item |
author |
Mohd Abid, Mohd Asyadi Azam Bistamam, Mohd Shahril Amin Abdul Manaf, Nor Syafira Mohamad, Effendi |
author_facet |
Mohd Abid, Mohd Asyadi Azam Bistamam, Mohd Shahril Amin Abdul Manaf, Nor Syafira Mohamad, Effendi |
author_sort |
Mohd Abid, Mohd Asyadi Azam |
title |
Aligned Carbon Nanotube Growth from Chemical Vapor Deposition |
title_short |
Aligned Carbon Nanotube Growth from Chemical Vapor Deposition |
title_full |
Aligned Carbon Nanotube Growth from Chemical Vapor Deposition |
title_fullStr |
Aligned Carbon Nanotube Growth from Chemical Vapor Deposition |
title_full_unstemmed |
Aligned Carbon Nanotube Growth from Chemical Vapor Deposition |
title_sort |
aligned carbon nanotube growth from chemical vapor deposition |
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2014 |
url |
http://eprints.utem.edu.my/id/eprint/13663/1/11.0_Final_Paper_2304_%28Aligned_CNT%29.pdf http://eprints.utem.edu.my/id/eprint/13663/ http://www.jsme.or.jp/event/detail.php?id=2878 |
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1665905555521142784 |
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13.211869 |