Novel Synthesis and Promising Applications of Graphene Nanostructures
The transition from semi-metallic to semiconducting states in graphene has ushered in nanostructured materials with novel and enhanced electrical, mechanical, physiochemical and optical properties. The scope of graphene and its potential for novel applications could be substantially impacted by this...
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ump-196862018-04-11T02:08:21Z http://umpir.ump.edu.my/id/eprint/19686/ Novel Synthesis and Promising Applications of Graphene Nanostructures Ijeomah, Geoffrey Fahmi, Samsuri Mohamad Adzhar, Md Zawawi TK Electrical engineering. Electronics Nuclear engineering The transition from semi-metallic to semiconducting states in graphene has ushered in nanostructured materials with novel and enhanced electrical, mechanical, physiochemical and optical properties. The scope of graphene and its potential for novel applications could be substantially impacted by this transition. This article reviews the properties, recent synthesis methodologies and emerging applications of this wonder nanomaterial. The differentiations among the merits and challenges of current techniques are made, aiming to offer evidences to develop scalable and novel synthesis methodologies. The emphasis is on the synthesis, and the possible emerging promising applications arising from these conversion methods, and their overwhelming implications on our current knowledge of graphene and graphene nanostructures. Penerbit Universiti Malaysia Pahang 2017 Article PeerReviewed application/pdf en http://umpir.ump.edu.my/id/eprint/19686/1/4.pdf Ijeomah, Geoffrey and Fahmi, Samsuri and Mohamad Adzhar, Md Zawawi (2017) Novel Synthesis and Promising Applications of Graphene Nanostructures. International Journal of Engineering Technology And Sciences (IJETS), 8 (1). pp. 1-22. ISSN 2289-697X http://ijets.ump.edu.my/images/archive/Vol8/4.pdf doi: http://dx.doi.org/10.15282/ijets.8.2017.1.4.1079 |
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Online Access |
language |
English |
topic |
TK Electrical engineering. Electronics Nuclear engineering |
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TK Electrical engineering. Electronics Nuclear engineering Ijeomah, Geoffrey Fahmi, Samsuri Mohamad Adzhar, Md Zawawi Novel Synthesis and Promising Applications of Graphene Nanostructures |
description |
The transition from semi-metallic to semiconducting states in graphene has ushered in nanostructured materials with novel and enhanced electrical, mechanical, physiochemical and optical properties. The scope of graphene and its potential for novel applications could be substantially impacted by this transition. This article reviews the properties, recent synthesis methodologies and emerging applications of this wonder nanomaterial. The differentiations among the merits and challenges of current techniques are made, aiming to offer evidences to develop scalable and novel synthesis methodologies. The emphasis is on the synthesis, and the possible emerging promising applications arising from these conversion methods, and their overwhelming implications on our current knowledge of graphene and graphene nanostructures. |
format |
Article |
author |
Ijeomah, Geoffrey Fahmi, Samsuri Mohamad Adzhar, Md Zawawi |
author_facet |
Ijeomah, Geoffrey Fahmi, Samsuri Mohamad Adzhar, Md Zawawi |
author_sort |
Ijeomah, Geoffrey |
title |
Novel Synthesis and Promising Applications of Graphene Nanostructures |
title_short |
Novel Synthesis and Promising Applications of Graphene Nanostructures |
title_full |
Novel Synthesis and Promising Applications of Graphene Nanostructures |
title_fullStr |
Novel Synthesis and Promising Applications of Graphene Nanostructures |
title_full_unstemmed |
Novel Synthesis and Promising Applications of Graphene Nanostructures |
title_sort |
novel synthesis and promising applications of graphene nanostructures |
publisher |
Penerbit Universiti Malaysia Pahang |
publishDate |
2017 |
url |
http://umpir.ump.edu.my/id/eprint/19686/ http://umpir.ump.edu.my/id/eprint/19686/ http://umpir.ump.edu.my/id/eprint/19686/ http://umpir.ump.edu.my/id/eprint/19686/1/4.pdf |
first_indexed |
2023-09-18T22:28:11Z |
last_indexed |
2023-09-18T22:28:11Z |
_version_ |
1777416107893719040 |