Synthesis And Characterization Of Low Bandgap Nanocrystalline T-Zirconia

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 s...

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Main Author: Prastomo, Niki
Format: Thesis
Language:English
Published: 2007
Subjects:
Online Access:http://eprints.usm.my/29357/
http://eprints.usm.my/29357/1/Synthesis_and_characterization_of_low_bandgap_nanocrystalline_t-zirconia.pdf
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author Prastomo, Niki
author_facet Prastomo, Niki
author_sort Prastomo, Niki
building USM Institutional Repository
collection Online Access
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.
first_indexed 2025-11-15T16:53:54Z
format Thesis
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institution Universiti Sains Malaysia
institution_category Local University
language English
last_indexed 2025-11-15T16:53:54Z
publishDate 2007
recordtype eprints
repository_type Digital Repository
spelling usm-293572017-03-22T02:23:49Z http://eprints.usm.my/29357/ Synthesis And Characterization Of Low Bandgap Nanocrystalline T-Zirconia Prastomo, Niki Q Science 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 NonPeerReviewed application/pdf en http://eprints.usm.my/29357/1/Synthesis_and_characterization_of_low_bandgap_nanocrystalline_t-zirconia.pdf Prastomo, Niki (2007) Synthesis And Characterization Of Low Bandgap Nanocrystalline T-Zirconia. Masters thesis, USM.
spellingShingle Q Science
Prastomo, Niki
Synthesis And Characterization Of Low Bandgap Nanocrystalline T-Zirconia
title Synthesis And Characterization Of Low Bandgap Nanocrystalline T-Zirconia
title_full Synthesis And Characterization Of Low Bandgap Nanocrystalline T-Zirconia
title_fullStr Synthesis And Characterization Of Low Bandgap Nanocrystalline T-Zirconia
title_full_unstemmed Synthesis And Characterization Of Low Bandgap Nanocrystalline T-Zirconia
title_short Synthesis And Characterization Of Low Bandgap Nanocrystalline T-Zirconia
title_sort synthesis and characterization of low bandgap nanocrystalline t-zirconia
topic Q Science
url http://eprints.usm.my/29357/
http://eprints.usm.my/29357/1/Synthesis_and_characterization_of_low_bandgap_nanocrystalline_t-zirconia.pdf