Optical Properties of Tin Oxide Nanostructure Thin Films Prepared by Simple and Classical Method

In the present work, preparation of transparent conductive SnO2 thin films by classical-oxidation technique of thermal evaporated tin metal films, on glass substrates was carried out. The optical properties showed high transmission at visible and NIR regions. The energy band gap was found to be (3.8...

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Main Author: Rana Osamah Mahdi
Format: Article
Language:English
Published: Unviversity of Technology- Iraq 2012-12-01
Series:Engineering and Technology Journal
Subjects:
Online Access:https://etj.uotechnology.edu.iq/article_66182_c6005f22f7d82f1536e3e369bfcb127b.pdf
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author Rana Osamah Mahdi
author_facet Rana Osamah Mahdi
author_sort Rana Osamah Mahdi
collection DOAJ
description In the present work, preparation of transparent conductive SnO2 thin films by classical-oxidation technique of thermal evaporated tin metal films, on glass substrates was carried out. The optical properties showed high transmission at visible and NIR regions. The energy band gap was found to be (3.82eV). The structure properties showed that the tin oxide peak appears at (2q =30.24) and (2ϴ=63.39°) . The atomic force microscopy (AFM) results showed a nano-structured for the thin film with particle size ranging (15-140)nm and its root mean square (RMS) value was found to be (5.72 nm ).
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spelling doaj.art-73fb149f59424ebba46cea6e52a653f32024-02-04T17:40:30ZengUnviversity of Technology- IraqEngineering and Technology Journal1681-69002412-07582012-12-0130203565357210.30684/etj.30.20.766182Optical Properties of Tin Oxide Nanostructure Thin Films Prepared by Simple and Classical MethodRana Osamah MahdiIn the present work, preparation of transparent conductive SnO2 thin films by classical-oxidation technique of thermal evaporated tin metal films, on glass substrates was carried out. The optical properties showed high transmission at visible and NIR regions. The energy band gap was found to be (3.82eV). The structure properties showed that the tin oxide peak appears at (2q =30.24) and (2ϴ=63.39°) . The atomic force microscopy (AFM) results showed a nano-structured for the thin film with particle size ranging (15-140)nm and its root mean square (RMS) value was found to be (5.72 nm ).https://etj.uotechnology.edu.iq/article_66182_c6005f22f7d82f1536e3e369bfcb127b.pdfthin filmsnooptical properties
spellingShingle Rana Osamah Mahdi
Optical Properties of Tin Oxide Nanostructure Thin Films Prepared by Simple and Classical Method
Engineering and Technology Journal
thin film
sno
optical properties
title Optical Properties of Tin Oxide Nanostructure Thin Films Prepared by Simple and Classical Method
title_full Optical Properties of Tin Oxide Nanostructure Thin Films Prepared by Simple and Classical Method
title_fullStr Optical Properties of Tin Oxide Nanostructure Thin Films Prepared by Simple and Classical Method
title_full_unstemmed Optical Properties of Tin Oxide Nanostructure Thin Films Prepared by Simple and Classical Method
title_short Optical Properties of Tin Oxide Nanostructure Thin Films Prepared by Simple and Classical Method
title_sort optical properties of tin oxide nanostructure thin films prepared by simple and classical method
topic thin film
sno
optical properties
url https://etj.uotechnology.edu.iq/article_66182_c6005f22f7d82f1536e3e369bfcb127b.pdf
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