Surface morphology of nano-sized titanium dioxide

The nanoscale materials have a large surface area for a given volume. The larger particle size has some disadvantages such as it can increase the sensitivity to defects. Thus, in this study, the titanium dioxide was synthesized using new method of sol gel assisted with the milling process to investi...

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Published in:Applied Mechanics and Materials
Main Author: Nik Mohammad N.N.H.; Mamat M.H.; Said C.M.S.; Abidin M.H.; Rusop M.
Format: Conference paper
Language:English
Published: Trans Tech Publications Ltd 2014
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-84896867838&doi=10.4028%2fwww.scientific.net%2fAMM.534.63&partnerID=40&md5=8b9baeb05a3b7e8eb4a5e3d090a1046e
id 2-s2.0-84896867838
spelling 2-s2.0-84896867838
Nik Mohammad N.N.H.; Mamat M.H.; Said C.M.S.; Abidin M.H.; Rusop M.
Surface morphology of nano-sized titanium dioxide
2014
Applied Mechanics and Materials
534

10.4028/www.scientific.net/AMM.534.63
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84896867838&doi=10.4028%2fwww.scientific.net%2fAMM.534.63&partnerID=40&md5=8b9baeb05a3b7e8eb4a5e3d090a1046e
The nanoscale materials have a large surface area for a given volume. The larger particle size has some disadvantages such as it can increase the sensitivity to defects. Thus, in this study, the titanium dioxide was synthesized using new method of sol gel assisted with the milling process to investigate its structural and surface morphology. FESEM results show the agglomeration of the particles produces the large particle size of TiO2. In the milling process, longer milling time of 6 h does not affects much on the size of the particles of TiO2, but more affects on its surface morphology of TiO2. The effect on the milling amount of TiO2 also were studied where 4 gram TiO2 shows the highest agglomeration of the sample and 6 gram TiO2 shows the smooth surface compared to others. Finally, the best structure of TiO2 was added into the PMMA to investigate the effects of TiO2 on the composite surface morphology. © (2014) Trans Tech Publications, Switzerland.
Trans Tech Publications Ltd
16609336
English
Conference paper

author Nik Mohammad N.N.H.; Mamat M.H.; Said C.M.S.; Abidin M.H.; Rusop M.
spellingShingle Nik Mohammad N.N.H.; Mamat M.H.; Said C.M.S.; Abidin M.H.; Rusop M.
Surface morphology of nano-sized titanium dioxide
author_facet Nik Mohammad N.N.H.; Mamat M.H.; Said C.M.S.; Abidin M.H.; Rusop M.
author_sort Nik Mohammad N.N.H.; Mamat M.H.; Said C.M.S.; Abidin M.H.; Rusop M.
title Surface morphology of nano-sized titanium dioxide
title_short Surface morphology of nano-sized titanium dioxide
title_full Surface morphology of nano-sized titanium dioxide
title_fullStr Surface morphology of nano-sized titanium dioxide
title_full_unstemmed Surface morphology of nano-sized titanium dioxide
title_sort Surface morphology of nano-sized titanium dioxide
publishDate 2014
container_title Applied Mechanics and Materials
container_volume 534
container_issue
doi_str_mv 10.4028/www.scientific.net/AMM.534.63
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-84896867838&doi=10.4028%2fwww.scientific.net%2fAMM.534.63&partnerID=40&md5=8b9baeb05a3b7e8eb4a5e3d090a1046e
description The nanoscale materials have a large surface area for a given volume. The larger particle size has some disadvantages such as it can increase the sensitivity to defects. Thus, in this study, the titanium dioxide was synthesized using new method of sol gel assisted with the milling process to investigate its structural and surface morphology. FESEM results show the agglomeration of the particles produces the large particle size of TiO2. In the milling process, longer milling time of 6 h does not affects much on the size of the particles of TiO2, but more affects on its surface morphology of TiO2. The effect on the milling amount of TiO2 also were studied where 4 gram TiO2 shows the highest agglomeration of the sample and 6 gram TiO2 shows the smooth surface compared to others. Finally, the best structure of TiO2 was added into the PMMA to investigate the effects of TiO2 on the composite surface morphology. © (2014) Trans Tech Publications, Switzerland.
publisher Trans Tech Publications Ltd
issn 16609336
language English
format Conference paper
accesstype
record_format scopus
collection Scopus
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