Investigation of Optical Properties of ZnO Nanorods Grown on Different Substrates

ZnO nanorods arrays are synthesized over the different substrates namely; Indium Tin Oxide (ITO), Kapton Tape (KT), Polyethylene terephthalate (PET), Porous Silicon (PS) and Silicon (Si) using modified chemical bath deposition (MCBD) method at 95 ºC for 4 h. The MCBD is the air bubbles inside growth...

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Main Authors: Ahmed F. Abdulrahman, Sabah M. Ahmed, Naser M. Ahmed
Format: Article
Language:English
Published: University of Zakho 2018-12-01
Series:Science Journal of University of Zakho
Subjects:
Online Access:https://sjuoz.uoz.edu.krd/index.php/sjuoz/article/view/546
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author Ahmed F. Abdulrahman
Sabah M. Ahmed
Naser M. Ahmed
author_facet Ahmed F. Abdulrahman
Sabah M. Ahmed
Naser M. Ahmed
author_sort Ahmed F. Abdulrahman
collection DOAJ
description ZnO nanorods arrays are synthesized over the different substrates namely; Indium Tin Oxide (ITO), Kapton Tape (KT), Polyethylene terephthalate (PET), Porous Silicon (PS) and Silicon (Si) using modified chemical bath deposition (MCBD) method at 95 ºC for 4 h. The MCBD is the air bubbles inside growth solution during CBD process. The ZnO nano-seed layers are coated on different substrates using RF magnetron sputtering technique. The optical properties (transmittance, reflectance and energy band gap) and surface morphology of ZnO nanorods grown on different substrates have been investigated in details by using UV-Visible Spectrometer and Field emission scanning electron microscopy (FESEM), respectively. The results found that the morphology and diameter of ZnO nanorods is closely concerned to the nature of substrates. Also it is indicated that the substrate has strong and important impact on the growth, optical properties, Egand quality of synthesized ZnO nanorods (NRs). The higher transmittance has been observed for ZnO NRs grown over KT substrates and is about (~ 33 %). The average transmittance decreases sharply near UV region at wavelength around 393 nm for ZnO nanorods grown on ITO substrate. However, for PET and KT substrates, the transmittance decreases sharply near visible region around 401nm and 498 nm, respectively. Besides, the ZnO NRs grown on PS substrate have the strong reflectance characteristics after approximately 395 nm, and then decreases in the wavelength range of 410 nm to 700 nm. On the other hand, the strong reflectance property of ZnO NRs grown on Si substrate is observed at 400 nm.  Also the minimum and maximum Egare obtained for ZnO nanorods that fabricated on the KT substrate and porous silicon substrate, respectively.
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spelling doaj.art-4e2e29b768b544c78181d6ab7b2076e62022-12-22T00:38:42ZengUniversity of ZakhoScience Journal of University of Zakho2663-628X2663-62982018-12-016416016510.25271/sjuoz.2018.6.4.546546Investigation of Optical Properties of ZnO Nanorods Grown on Different SubstratesAhmed F. Abdulrahman0Sabah M. Ahmed1Naser M. Ahmed2Department of Physics, Faculty of Science, University of Zakho, Kurdistan Region - Iraq - (ahmed.abdulrahman@uoz.edu.krd).Department of Physics, University of Duhok, Kurdistan Region - Iraq - (sabma62@uod.ac).Department of Physics, School of Physics, Universiti Sains Malaysia, Penang, Malaysia - (naser@usm.my).ZnO nanorods arrays are synthesized over the different substrates namely; Indium Tin Oxide (ITO), Kapton Tape (KT), Polyethylene terephthalate (PET), Porous Silicon (PS) and Silicon (Si) using modified chemical bath deposition (MCBD) method at 95 ºC for 4 h. The MCBD is the air bubbles inside growth solution during CBD process. The ZnO nano-seed layers are coated on different substrates using RF magnetron sputtering technique. The optical properties (transmittance, reflectance and energy band gap) and surface morphology of ZnO nanorods grown on different substrates have been investigated in details by using UV-Visible Spectrometer and Field emission scanning electron microscopy (FESEM), respectively. The results found that the morphology and diameter of ZnO nanorods is closely concerned to the nature of substrates. Also it is indicated that the substrate has strong and important impact on the growth, optical properties, Egand quality of synthesized ZnO nanorods (NRs). The higher transmittance has been observed for ZnO NRs grown over KT substrates and is about (~ 33 %). The average transmittance decreases sharply near UV region at wavelength around 393 nm for ZnO nanorods grown on ITO substrate. However, for PET and KT substrates, the transmittance decreases sharply near visible region around 401nm and 498 nm, respectively. Besides, the ZnO NRs grown on PS substrate have the strong reflectance characteristics after approximately 395 nm, and then decreases in the wavelength range of 410 nm to 700 nm. On the other hand, the strong reflectance property of ZnO NRs grown on Si substrate is observed at 400 nm.  Also the minimum and maximum Egare obtained for ZnO nanorods that fabricated on the KT substrate and porous silicon substrate, respectively.https://sjuoz.uoz.edu.krd/index.php/sjuoz/article/view/546ZnONanorodsSubstratesModified Chemical bath DepositionOptical Properties
spellingShingle Ahmed F. Abdulrahman
Sabah M. Ahmed
Naser M. Ahmed
Investigation of Optical Properties of ZnO Nanorods Grown on Different Substrates
Science Journal of University of Zakho
ZnO
Nanorods
Substrates
Modified Chemical bath Deposition
Optical Properties
title Investigation of Optical Properties of ZnO Nanorods Grown on Different Substrates
title_full Investigation of Optical Properties of ZnO Nanorods Grown on Different Substrates
title_fullStr Investigation of Optical Properties of ZnO Nanorods Grown on Different Substrates
title_full_unstemmed Investigation of Optical Properties of ZnO Nanorods Grown on Different Substrates
title_short Investigation of Optical Properties of ZnO Nanorods Grown on Different Substrates
title_sort investigation of optical properties of zno nanorods grown on different substrates
topic ZnO
Nanorods
Substrates
Modified Chemical bath Deposition
Optical Properties
url https://sjuoz.uoz.edu.krd/index.php/sjuoz/article/view/546
work_keys_str_mv AT ahmedfabdulrahman investigationofopticalpropertiesofznonanorodsgrownondifferentsubstrates
AT sabahmahmed investigationofopticalpropertiesofznonanorodsgrownondifferentsubstrates
AT nasermahmed investigationofopticalpropertiesofznonanorodsgrownondifferentsubstrates