Aging effects on physical and electrical properties of nano-structured MgZnO thin films for carbon nanotube applications

This paper addresses the growth of nano-structured MgZnO thin films by sol-gel spin coating method which will be used as a template layer to grow carbon nanotubes. The nano-structured MgZnO films were deposited on platinized (100) silicon substrates. In this work, we focused on the effect of aging a...

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Published in:Journal of Nanoscience and Nanotechnology
Main Author: Ahmad R.; Salina M.; Mamat M.H.; Awang Teh A.; Kara M.; Rusop M.; Awang Z.
Format: Article
Language:English
Published: 2012
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-84870768761&doi=10.1166%2fjnn.2012.4524&partnerID=40&md5=68ae1f7081d68831e12101e39ead2b17
id 2-s2.0-84870768761
spelling 2-s2.0-84870768761
Ahmad R.; Salina M.; Mamat M.H.; Awang Teh A.; Kara M.; Rusop M.; Awang Z.
Aging effects on physical and electrical properties of nano-structured MgZnO thin films for carbon nanotube applications
2012
Journal of Nanoscience and Nanotechnology
12
10
10.1166/jnn.2012.4524
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84870768761&doi=10.1166%2fjnn.2012.4524&partnerID=40&md5=68ae1f7081d68831e12101e39ead2b17
This paper addresses the growth of nano-structured MgZnO thin films by sol-gel spin coating method which will be used as a template layer to grow carbon nanotubes. The nano-structured MgZnO films were deposited on platinized (100) silicon substrates. In this work, we focused on the effect of aging and Mg content on the film structure and resistivity. Sols with Mg content of 10, 30 and 50 at.% were subjected to aging times of between 3 to 240 hours. Results from scanning (SEM) and field emission scanning electron (FESEM) microscopes and surface profiler (SP) showed that the sol aging increased the thickness, grain size and surface roughness for aging up to 240 hours. The energy dispersive analysis by X-ray (EDAX) confirmed the element of Mg in the ZnO films. The electrical resistivity also increased with aging time as confirmed by four point probe method. The results suggest that appropriate aging of the sol is important for improving physical quality and electrical performance of MgZnO thin films derived from sol-gel technique. Copyright © 2012 American Scientific Publishers. All rights reserved.

15334899
English
Article

author Ahmad R.; Salina M.; Mamat M.H.; Awang Teh A.; Kara M.; Rusop M.; Awang Z.
spellingShingle Ahmad R.; Salina M.; Mamat M.H.; Awang Teh A.; Kara M.; Rusop M.; Awang Z.
Aging effects on physical and electrical properties of nano-structured MgZnO thin films for carbon nanotube applications
author_facet Ahmad R.; Salina M.; Mamat M.H.; Awang Teh A.; Kara M.; Rusop M.; Awang Z.
author_sort Ahmad R.; Salina M.; Mamat M.H.; Awang Teh A.; Kara M.; Rusop M.; Awang Z.
title Aging effects on physical and electrical properties of nano-structured MgZnO thin films for carbon nanotube applications
title_short Aging effects on physical and electrical properties of nano-structured MgZnO thin films for carbon nanotube applications
title_full Aging effects on physical and electrical properties of nano-structured MgZnO thin films for carbon nanotube applications
title_fullStr Aging effects on physical and electrical properties of nano-structured MgZnO thin films for carbon nanotube applications
title_full_unstemmed Aging effects on physical and electrical properties of nano-structured MgZnO thin films for carbon nanotube applications
title_sort Aging effects on physical and electrical properties of nano-structured MgZnO thin films for carbon nanotube applications
publishDate 2012
container_title Journal of Nanoscience and Nanotechnology
container_volume 12
container_issue 10
doi_str_mv 10.1166/jnn.2012.4524
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-84870768761&doi=10.1166%2fjnn.2012.4524&partnerID=40&md5=68ae1f7081d68831e12101e39ead2b17
description This paper addresses the growth of nano-structured MgZnO thin films by sol-gel spin coating method which will be used as a template layer to grow carbon nanotubes. The nano-structured MgZnO films were deposited on platinized (100) silicon substrates. In this work, we focused on the effect of aging and Mg content on the film structure and resistivity. Sols with Mg content of 10, 30 and 50 at.% were subjected to aging times of between 3 to 240 hours. Results from scanning (SEM) and field emission scanning electron (FESEM) microscopes and surface profiler (SP) showed that the sol aging increased the thickness, grain size and surface roughness for aging up to 240 hours. The energy dispersive analysis by X-ray (EDAX) confirmed the element of Mg in the ZnO films. The electrical resistivity also increased with aging time as confirmed by four point probe method. The results suggest that appropriate aging of the sol is important for improving physical quality and electrical performance of MgZnO thin films derived from sol-gel technique. Copyright © 2012 American Scientific Publishers. All rights reserved.
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