Synthesis And Characterization Of Low Bandgap Nanocrystalline T-Zirconia [TA418.9.N35 N692 2007 f rb].
Serbuk nanohablur t-ZrO2 disintesis melalui kaedah kimia untuk mencari kemungkinan jika dop elektronik akan meningkatkan konduktiviti elektronik oksida. Y3+ ditambah sebagai penstabil untuk mengekalkan fasa t-ZrO2 manakala Nb5+ dimasukkan untuk dop elektronik. Nanocrystal t-ZrO2 powders were syn...
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2007
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my-usm-ep.94882017-05-15T08:05:07Z Synthesis And Characterization Of Low Bandgap Nanocrystalline T-Zirconia [TA418.9.N35 N692 2007 f rb]. 2007-07 Prastomo, Niki TA401-492 Materials of engineering and construction. Mechanics of materials Serbuk nanohablur t-ZrO2 disintesis melalui kaedah kimia untuk mencari kemungkinan jika dop elektronik akan meningkatkan konduktiviti elektronik oksida. Y3+ ditambah sebagai penstabil untuk mengekalkan fasa t-ZrO2 manakala Nb5+ dimasukkan untuk dop elektronik. Nanocrystal t-ZrO2 powders were synthesized through a chemical route to seek a possibility if electronic doping would improve the electronics conductivity of the oxide. Y3+ was added as a stabilizer to retain tetragonal phase ZrO2 whereas Nb5+ was added for electronics doping. 2007-07 Thesis http://eprints.usm.my/9488/ http://eprints.usm.my/9488/1/SYNTHESIS_AND_CHARACTERIZATION.pdf application/pdf en public masters Universiti Sains Malaysia Pusat Pengajian Kejuruteraan Bahan dan Sumber Mineral |
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English |
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TA401-492 Materials of engineering and construction Mechanics of materials |
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TA401-492 Materials of engineering and construction Mechanics of materials Prastomo, Niki Synthesis And Characterization Of Low Bandgap Nanocrystalline T-Zirconia [TA418.9.N35 N692 2007 f rb]. |
description |
Serbuk nanohablur t-ZrO2 disintesis melalui kaedah kimia untuk mencari kemungkinan jika dop elektronik akan meningkatkan konduktiviti elektronik oksida. Y3+
ditambah sebagai penstabil untuk mengekalkan fasa t-ZrO2 manakala Nb5+ dimasukkan untuk dop elektronik.
Nanocrystal t-ZrO2 powders were synthesized through a chemical route to seek a possibility if electronic doping would improve the electronics conductivity of the oxide.
Y3+ was added as a stabilizer to retain tetragonal phase ZrO2 whereas Nb5+ was added for electronics doping.
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format |
Thesis |
qualification_level |
Master's degree |
author |
Prastomo, Niki |
author_facet |
Prastomo, Niki |
author_sort |
Prastomo, Niki |
title |
Synthesis And Characterization Of Low Bandgap Nanocrystalline T-Zirconia [TA418.9.N35 N692 2007 f rb].
|
title_short |
Synthesis And Characterization Of Low Bandgap Nanocrystalline T-Zirconia [TA418.9.N35 N692 2007 f rb].
|
title_full |
Synthesis And Characterization Of Low Bandgap Nanocrystalline T-Zirconia [TA418.9.N35 N692 2007 f rb].
|
title_fullStr |
Synthesis And Characterization Of Low Bandgap Nanocrystalline T-Zirconia [TA418.9.N35 N692 2007 f rb].
|
title_full_unstemmed |
Synthesis And Characterization Of Low Bandgap Nanocrystalline T-Zirconia [TA418.9.N35 N692 2007 f rb].
|
title_sort |
synthesis and characterization of low bandgap nanocrystalline t-zirconia [ta418.9.n35 n692 2007 f rb]. |
granting_institution |
Universiti Sains Malaysia |
granting_department |
Pusat Pengajian Kejuruteraan Bahan dan Sumber Mineral |
publishDate |
2007 |
url |
http://eprints.usm.my/9488/1/SYNTHESIS_AND_CHARACTERIZATION.pdf |
_version_ |
1747819775077122048 |