Effect of annealing temperature on the surface morphology of titanium dioxide thin films prepared by sol-gel method / Nur Khairani Samin
Titanium dioxide (Ti02) thin films have been prepared using sol gel method and deposited by spin coating technique. Ti02 thin films were deposited on silicon and glass substrates. The influence of annealing temperature from 300°C to 500°C on the surface morphology, structural and optical properties...
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my.uitm.ir.487492021-07-22T09:38:27Z http://ir.uitm.edu.my/id/eprint/48749/ Effect of annealing temperature on the surface morphology of titanium dioxide thin films prepared by sol-gel method / Nur Khairani Samin Samin, Nur Khairani Heat Temperature measurements Temperature Titanium dioxide (Ti02) thin films have been prepared using sol gel method and deposited by spin coating technique. Ti02 thin films were deposited on silicon and glass substrates. The influence of annealing temperature from 300°C to 500°C on the surface morphology, structural and optical properties were characterized by Scanning Electron Microscopy (SEM), X-Ray Diffraction (XRD) and Ultraviolet visible spectroscopy (UV-Vis). The SEM image of thin film deposited on silicon substrate shows the grain boundary of Tid is large and decrease with higher annealing temperature. While for thin films deposited on glass substrate do not shows any significant difference as the annealing temperature increased. This might happen due to lattice mismatching. Structural properties from the XRD analysis show that the Ti02 thin film is nanocrystalline anatase phase. While UV-Vis shows the thin films has high transmittance percentage of visible light and fully absorb the UV light at wavelength of 300 nm. 2008 Student Project NonPeerReviewed text en http://ir.uitm.edu.my/id/eprint/48749/1/48749.pdf ID48749 Samin, Nur Khairani (2008) Effect of annealing temperature on the surface morphology of titanium dioxide thin films prepared by sol-gel method / Nur Khairani Samin. [Student Project] (Unpublished) |
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Titanium dioxide (Ti02) thin films have been prepared using sol gel method and deposited by spin coating technique. Ti02 thin films were deposited on silicon and glass substrates. The influence of annealing temperature from 300°C to 500°C on the surface morphology, structural and optical properties were characterized by Scanning Electron Microscopy (SEM), X-Ray Diffraction (XRD) and Ultraviolet visible spectroscopy (UV-Vis). The SEM image of thin film deposited on silicon substrate shows the grain boundary of Tid is large and decrease with higher annealing temperature. While for thin films deposited on glass substrate do not shows any significant difference as the annealing temperature increased. This might happen due to lattice mismatching. Structural properties from the XRD analysis show that the Ti02 thin film is nanocrystalline anatase phase. While UV-Vis shows the thin films has high transmittance percentage of visible light and fully absorb the UV light at wavelength of 300 nm. |
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Student Project |
author |
Samin, Nur Khairani |
author_facet |
Samin, Nur Khairani |
author_sort |
Samin, Nur Khairani |
title |
Effect of annealing temperature on the surface morphology of titanium dioxide thin films prepared by sol-gel method / Nur Khairani Samin |
title_short |
Effect of annealing temperature on the surface morphology of titanium dioxide thin films prepared by sol-gel method / Nur Khairani Samin |
title_full |
Effect of annealing temperature on the surface morphology of titanium dioxide thin films prepared by sol-gel method / Nur Khairani Samin |
title_fullStr |
Effect of annealing temperature on the surface morphology of titanium dioxide thin films prepared by sol-gel method / Nur Khairani Samin |
title_full_unstemmed |
Effect of annealing temperature on the surface morphology of titanium dioxide thin films prepared by sol-gel method / Nur Khairani Samin |
title_sort |
effect of annealing temperature on the surface morphology of titanium dioxide thin films prepared by sol-gel method / nur khairani samin |
publishDate |
2008 |
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http://ir.uitm.edu.my/id/eprint/48749/1/48749.pdf http://ir.uitm.edu.my/id/eprint/48749/ |
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1706960435263045632 |
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13.211869 |