Structural modification of pristine graphene network towards nanoporous graphene membrane: a review

A single graphene layer is superior many ways preferably in electronic devices application. However, mild modification of the graphene network could open a new potential to the ultrathin graphene membrane. Moreover, recent studies demonstrated that a few simple techniques could generate and control...

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Main Authors: Mukri, Mohd. ‘Azizir-Rahim, Elias, Mohd. Syafiq, Aziz, Madzlan, Tanemura, Masaki, Mohd. Yusop, Mohd. Zamri
Format: Article
Published: Penerbit UTM Press 2018
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Online Access:http://eprints.utm.my/id/eprint/82089/
http://dx.doi.org/10.11113/amst.v22n1.120
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spelling my.utm.820892019-10-25T08:59:42Z http://eprints.utm.my/id/eprint/82089/ Structural modification of pristine graphene network towards nanoporous graphene membrane: a review Mukri, Mohd. ‘Azizir-Rahim Elias, Mohd. Syafiq Aziz, Madzlan Tanemura, Masaki Mohd. Yusop, Mohd. Zamri TJ Mechanical engineering and machinery A single graphene layer is superior many ways preferably in electronic devices application. However, mild modification of the graphene network could open a new potential to the ultrathin graphene membrane. Moreover, recent studies demonstrated that a few simple techniques could generate and control the nanopores size on single layer graphene sheet simultaneously. This review paper will discuss all potential techniques that are capable to generate nanopores structure on the pristine single layer graphene network. Penerbit UTM Press 2018-06 Article PeerReviewed Mukri, Mohd. ‘Azizir-Rahim and Elias, Mohd. Syafiq and Aziz, Madzlan and Tanemura, Masaki and Mohd. Yusop, Mohd. Zamri (2018) Structural modification of pristine graphene network towards nanoporous graphene membrane: a review. Applied Membrane Science And Technology, 22 (1). pp. 31-41. ISSN 2600-9266 http://dx.doi.org/10.11113/amst.v22n1.120 DOI:10.11113/amst.v22n1.120
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/
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Mukri, Mohd. ‘Azizir-Rahim
Elias, Mohd. Syafiq
Aziz, Madzlan
Tanemura, Masaki
Mohd. Yusop, Mohd. Zamri
Structural modification of pristine graphene network towards nanoporous graphene membrane: a review
description A single graphene layer is superior many ways preferably in electronic devices application. However, mild modification of the graphene network could open a new potential to the ultrathin graphene membrane. Moreover, recent studies demonstrated that a few simple techniques could generate and control the nanopores size on single layer graphene sheet simultaneously. This review paper will discuss all potential techniques that are capable to generate nanopores structure on the pristine single layer graphene network.
format Article
author Mukri, Mohd. ‘Azizir-Rahim
Elias, Mohd. Syafiq
Aziz, Madzlan
Tanemura, Masaki
Mohd. Yusop, Mohd. Zamri
author_facet Mukri, Mohd. ‘Azizir-Rahim
Elias, Mohd. Syafiq
Aziz, Madzlan
Tanemura, Masaki
Mohd. Yusop, Mohd. Zamri
author_sort Mukri, Mohd. ‘Azizir-Rahim
title Structural modification of pristine graphene network towards nanoporous graphene membrane: a review
title_short Structural modification of pristine graphene network towards nanoporous graphene membrane: a review
title_full Structural modification of pristine graphene network towards nanoporous graphene membrane: a review
title_fullStr Structural modification of pristine graphene network towards nanoporous graphene membrane: a review
title_full_unstemmed Structural modification of pristine graphene network towards nanoporous graphene membrane: a review
title_sort structural modification of pristine graphene network towards nanoporous graphene membrane: a review
publisher Penerbit UTM Press
publishDate 2018
url http://eprints.utm.my/id/eprint/82089/
http://dx.doi.org/10.11113/amst.v22n1.120
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score 13.160551