Annealing induced microstructure engineering of antimony tri-selenide thin films

The presented work demonstrates the effect of annealing on the structural, surface morphology and optical properties of Antimony Triselenide (Sb2Se3) thin films deposited by thermal evaporation. Two sets of thin films of Sb2Se3 were grown on soda lime glass (SLG) substrates by thermal evaporation wi...

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Main Authors: Haque, F., Elumalai, Naveen Kumar, Wright, M., Mahmud, M., Wang, D., Upama, M., Xu, C., Uddin, A.
Format: Journal Article
Published: Pergamon 2018
Online Access:http://hdl.handle.net/20.500.11937/74119
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author Haque, F.
Elumalai, Naveen Kumar
Wright, M.
Mahmud, M.
Wang, D.
Upama, M.
Xu, C.
Uddin, A.
author_facet Haque, F.
Elumalai, Naveen Kumar
Wright, M.
Mahmud, M.
Wang, D.
Upama, M.
Xu, C.
Uddin, A.
author_sort Haque, F.
building Curtin Institutional Repository
collection Online Access
description The presented work demonstrates the effect of annealing on the structural, surface morphology and optical properties of Antimony Triselenide (Sb2Se3) thin films deposited by thermal evaporation. Two sets of thin films of Sb2Se3 were grown on soda lime glass (SLG) substrates by thermal evaporation with and without substrate heating. Both sets of films were then annealed at three distinct temperatures (100 °C, 200 °C and 300 °C) to study the effects of annealing on the microstructure. Analysis using XRD (X-Ray Diffraction) characterization revealed that the as-deposited films without substrate heating exhibit an amorphous nature, whereas the films grown with concurrent substrate heating are polycrystalline with orthorhombic structure. The films annealed at high temperature with concurrent substrate heating possess smooth and continuous grain morphologies. The effect of annealing was also found to have significant impact on the band gap and optical properties of the Sb2Se3 thin films.
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format Journal Article
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T10:59:27Z
publishDate 2018
publisher Pergamon
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spelling curtin-20.500.11937-741192019-06-26T08:04:39Z Annealing induced microstructure engineering of antimony tri-selenide thin films Haque, F. Elumalai, Naveen Kumar Wright, M. Mahmud, M. Wang, D. Upama, M. Xu, C. Uddin, A. The presented work demonstrates the effect of annealing on the structural, surface morphology and optical properties of Antimony Triselenide (Sb2Se3) thin films deposited by thermal evaporation. Two sets of thin films of Sb2Se3 were grown on soda lime glass (SLG) substrates by thermal evaporation with and without substrate heating. Both sets of films were then annealed at three distinct temperatures (100 °C, 200 °C and 300 °C) to study the effects of annealing on the microstructure. Analysis using XRD (X-Ray Diffraction) characterization revealed that the as-deposited films without substrate heating exhibit an amorphous nature, whereas the films grown with concurrent substrate heating are polycrystalline with orthorhombic structure. The films annealed at high temperature with concurrent substrate heating possess smooth and continuous grain morphologies. The effect of annealing was also found to have significant impact on the band gap and optical properties of the Sb2Se3 thin films. 2018 Journal Article http://hdl.handle.net/20.500.11937/74119 10.1016/j.materresbull.2017.11.014 Pergamon restricted
spellingShingle Haque, F.
Elumalai, Naveen Kumar
Wright, M.
Mahmud, M.
Wang, D.
Upama, M.
Xu, C.
Uddin, A.
Annealing induced microstructure engineering of antimony tri-selenide thin films
title Annealing induced microstructure engineering of antimony tri-selenide thin films
title_full Annealing induced microstructure engineering of antimony tri-selenide thin films
title_fullStr Annealing induced microstructure engineering of antimony tri-selenide thin films
title_full_unstemmed Annealing induced microstructure engineering of antimony tri-selenide thin films
title_short Annealing induced microstructure engineering of antimony tri-selenide thin films
title_sort annealing induced microstructure engineering of antimony tri-selenide thin films
url http://hdl.handle.net/20.500.11937/74119