A Controlled Growth of Carbon Nanofibers (CNFs) on Graphene

Carbon nanofibers (CNFs) have superior properties such as high conductivity, good mechanical strength, high specific surface area, and chemical stability. CNFs-graphene hybrid material can be used as a high-quality electrode in electronics applications. In the CNFs on graphene synthesis, the growth...

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Published in:INTERNATIONAL JOURNAL OF NANOELECTRONICS AND MATERIALS
Main Authors: Fiyatillah, Mishtha; Sabki, S. N.; Norzilah, A. H.; Kita, L. K. Wisnu; Idris, M. A.; Othman, N.; Abd Rahim, A. F.
Format: Article
Language:English
Published: UNIMAP PRESS 2023
Subjects:
Online Access:https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001141805800010
author Fiyatillah
Mishtha; Sabki
S. N.; Norzilah
A. H.; Kita
L. K. Wisnu; Idris
M. A.; Othman
N.; Abd Rahim, A. F.
spellingShingle Fiyatillah
Mishtha; Sabki
S. N.; Norzilah
A. H.; Kita
L. K. Wisnu; Idris
M. A.; Othman
N.; Abd Rahim, A. F.
A Controlled Growth of Carbon Nanofibers (CNFs) on Graphene
Materials Science
author_facet Fiyatillah
Mishtha; Sabki
S. N.; Norzilah
A. H.; Kita
L. K. Wisnu; Idris
M. A.; Othman
N.; Abd Rahim, A. F.
author_sort Fiyatillah
spelling Fiyatillah, Mishtha; Sabki, S. N.; Norzilah, A. H.; Kita, L. K. Wisnu; Idris, M. A.; Othman, N.; Abd Rahim, A. F.
A Controlled Growth of Carbon Nanofibers (CNFs) on Graphene
INTERNATIONAL JOURNAL OF NANOELECTRONICS AND MATERIALS
English
Article
Carbon nanofibers (CNFs) have superior properties such as high conductivity, good mechanical strength, high specific surface area, and chemical stability. CNFs-graphene hybrid material can be used as a high-quality electrode in electronics applications. In the CNFs on graphene synthesis, the growth parameters must be well controlled. This work observes the evolution of the CNF's growth on graphene on Ni at reaction temperatures of 800oC and 860oC and at different reaction times of 30 min, 60 min, and 120 min. This research aims to find suitable conditions for obtaining controllable growth of CNFs on graphene. Based on the SEM measurement, it was found that the 860oC reaction temperature at 60 min and 120 min reaction time led to longer and smaller widths of CNFs with high coverage and distribution on graphene. The CNFs on graphene formation were confirmed by the XRD analysis.
UNIMAP PRESS
1985-5761
2232-1535
2023
16


Materials Science

WOS:001141805800010
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001141805800010
title A Controlled Growth of Carbon Nanofibers (CNFs) on Graphene
title_short A Controlled Growth of Carbon Nanofibers (CNFs) on Graphene
title_full A Controlled Growth of Carbon Nanofibers (CNFs) on Graphene
title_fullStr A Controlled Growth of Carbon Nanofibers (CNFs) on Graphene
title_full_unstemmed A Controlled Growth of Carbon Nanofibers (CNFs) on Graphene
title_sort A Controlled Growth of Carbon Nanofibers (CNFs) on Graphene
container_title INTERNATIONAL JOURNAL OF NANOELECTRONICS AND MATERIALS
language English
format Article
description Carbon nanofibers (CNFs) have superior properties such as high conductivity, good mechanical strength, high specific surface area, and chemical stability. CNFs-graphene hybrid material can be used as a high-quality electrode in electronics applications. In the CNFs on graphene synthesis, the growth parameters must be well controlled. This work observes the evolution of the CNF's growth on graphene on Ni at reaction temperatures of 800oC and 860oC and at different reaction times of 30 min, 60 min, and 120 min. This research aims to find suitable conditions for obtaining controllable growth of CNFs on graphene. Based on the SEM measurement, it was found that the 860oC reaction temperature at 60 min and 120 min reaction time led to longer and smaller widths of CNFs with high coverage and distribution on graphene. The CNFs on graphene formation were confirmed by the XRD analysis.
publisher UNIMAP PRESS
issn 1985-5761
2232-1535
publishDate 2023
container_volume 16
container_issue
doi_str_mv
topic Materials Science
topic_facet Materials Science
accesstype
id WOS:001141805800010
url https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001141805800010
record_format wos
collection Web of Science (WoS)
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