Chemical Bath Deposition Of Ti-Doped Zno Nanorods For Uv-Photodetector Applications

This work studied the effects of titanium (Ti) on the properties of zinc oxide (ZnO) nanorods (NRs) grown on Si substrates using chemical bath deposition method with TiO2 as a Ti source. X-ray diffraction (XRD) results showed an increase in the crystallite size from 44.4 nm in the undoped sample to...

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Main Author: Bidier, Shaker Ali Hamad Abu
Format: Thesis
Language:English
Published: 2018
Subjects:
Online Access:http://eprints.usm.my/44231/
Abstract Abstract here
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author Bidier, Shaker Ali Hamad Abu
author_facet Bidier, Shaker Ali Hamad Abu
author_sort Bidier, Shaker Ali Hamad Abu
description This work studied the effects of titanium (Ti) on the properties of zinc oxide (ZnO) nanorods (NRs) grown on Si substrates using chemical bath deposition method with TiO2 as a Ti source. X-ray diffraction (XRD) results showed an increase in the crystallite size from 44.4 nm in the undoped sample to 51.2 nm in the doped sample. Photoluminescence results revealed an increment in the energy band gap from 3.241 eV for the undoped sample to 3.293 eV for the doped sample. Hall effect measurements also showed an enhancement in the electrical properties of doped samples, the carrier concentration increased from 8.7×1016 cm-3 for the undoped sample to 2.1×1018 cm-3 for the doped sample.
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spelling usm-442312019-04-29T01:34:07Z http://eprints.usm.my/44231/ Chemical Bath Deposition Of Ti-Doped Zno Nanorods For Uv-Photodetector Applications Bidier, Shaker Ali Hamad Abu QC1 Physics (General) This work studied the effects of titanium (Ti) on the properties of zinc oxide (ZnO) nanorods (NRs) grown on Si substrates using chemical bath deposition method with TiO2 as a Ti source. X-ray diffraction (XRD) results showed an increase in the crystallite size from 44.4 nm in the undoped sample to 51.2 nm in the doped sample. Photoluminescence results revealed an increment in the energy band gap from 3.241 eV for the undoped sample to 3.293 eV for the doped sample. Hall effect measurements also showed an enhancement in the electrical properties of doped samples, the carrier concentration increased from 8.7×1016 cm-3 for the undoped sample to 2.1×1018 cm-3 for the doped sample. 2018-04 Thesis NonPeerReviewed application/pdf en http://eprints.usm.my/44231/1/SHAKER%20ALI%20HAMAD%20ABU%20BIDIER.pdf Bidier, Shaker Ali Hamad Abu (2018) Chemical Bath Deposition Of Ti-Doped Zno Nanorods For Uv-Photodetector Applications. PhD thesis, Universiti Sains Malaysia.
spellingShingle QC1 Physics (General)
Bidier, Shaker Ali Hamad Abu
Chemical Bath Deposition Of Ti-Doped Zno Nanorods For Uv-Photodetector Applications
thesis_level PhD
title Chemical Bath Deposition Of Ti-Doped Zno Nanorods For Uv-Photodetector Applications
title_full Chemical Bath Deposition Of Ti-Doped Zno Nanorods For Uv-Photodetector Applications
title_fullStr Chemical Bath Deposition Of Ti-Doped Zno Nanorods For Uv-Photodetector Applications
title_full_unstemmed Chemical Bath Deposition Of Ti-Doped Zno Nanorods For Uv-Photodetector Applications
title_short Chemical Bath Deposition Of Ti-Doped Zno Nanorods For Uv-Photodetector Applications
title_sort chemical bath deposition of ti doped zno nanorods for uv photodetector applications
topic QC1 Physics (General)
url http://eprints.usm.my/44231/
work_keys_str_mv AT bidiershakeralihamadabu chemicalbathdepositionoftidopedznonanorodsforuvphotodetectorapplications