Effect Of Annealing Temperature On Cerium Oxide Thin Films Grown By Dc Sputtering Method

The cerium thin films were deposited on n-type Si (100) substrate by direct current (DC) sputtering followed by post-annealing at different temperature (400ᵒ C and 600ᵒ C, 800ᵒ C, 1000ᵒ C) in an oxygen ambient. In this study, the effect of annealing temperature on the crystallized CeO2 thin films wa...

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Main Authors: Zabidi, Ainita Rozati Mohd, Hassan, Zainuriah, Way, Foong Lim
Format: Conference or Workshop Item
Language:English
Published: 2020
Subjects:
Online Access:http://eprints.usm.my/48907/1/MNRG_LWF01.pdf
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author Zabidi, Ainita Rozati Mohd
Hassan, Zainuriah
Way, Foong Lim
author_facet Zabidi, Ainita Rozati Mohd
Hassan, Zainuriah
Way, Foong Lim
author_sort Zabidi, Ainita Rozati Mohd
collection USM
description The cerium thin films were deposited on n-type Si (100) substrate by direct current (DC) sputtering followed by post-annealing at different temperature (400ᵒ C and 600ᵒ C, 800ᵒ C, 1000ᵒ C) in an oxygen ambient. In this study, the effect of annealing temperature on the crystallized CeO2 thin films was characterized by using grazing incidence X-ray diffraction (GIXRD). The surface topology and surface morphology of the CeO2 were analyzed by using atomic force microscopy (AFM) and field emission scanning electron microscope (FESEM). The energy bandgap was calculated from the ultraviolet-visible spectroscopy (UV-Vis) measurement. GIXRD result shows (111) plane has the highest peak intensity, therefore (111) plane was selected as the preferred orientation for CeO2 thin films. AFM results reveal the root-mean-square (RMS) roughness of the CeO2 thin films decreased as annealing temperature increased from 400ᵒC to 1000ᵒC.
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spelling usm.eprints-489072021-04-15T09:02:42Z http://eprints.usm.my/48907/ Effect Of Annealing Temperature On Cerium Oxide Thin Films Grown By Dc Sputtering Method Zabidi, Ainita Rozati Mohd Hassan, Zainuriah Way, Foong Lim QC1-999 Physics The cerium thin films were deposited on n-type Si (100) substrate by direct current (DC) sputtering followed by post-annealing at different temperature (400ᵒ C and 600ᵒ C, 800ᵒ C, 1000ᵒ C) in an oxygen ambient. In this study, the effect of annealing temperature on the crystallized CeO2 thin films was characterized by using grazing incidence X-ray diffraction (GIXRD). The surface topology and surface morphology of the CeO2 were analyzed by using atomic force microscopy (AFM) and field emission scanning electron microscope (FESEM). The energy bandgap was calculated from the ultraviolet-visible spectroscopy (UV-Vis) measurement. GIXRD result shows (111) plane has the highest peak intensity, therefore (111) plane was selected as the preferred orientation for CeO2 thin films. AFM results reveal the root-mean-square (RMS) roughness of the CeO2 thin films decreased as annealing temperature increased from 400ᵒC to 1000ᵒC. 2020-12-02 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.usm.my/48907/1/MNRG_LWF01.pdf Zabidi, Ainita Rozati Mohd and Hassan, Zainuriah and Way, Foong Lim (2020) Effect Of Annealing Temperature On Cerium Oxide Thin Films Grown By Dc Sputtering Method. In: 5th Meeting of Malaysia Nitrides Research Group (MNRG 2020).
spellingShingle QC1-999 Physics
Zabidi, Ainita Rozati Mohd
Hassan, Zainuriah
Way, Foong Lim
Effect Of Annealing Temperature On Cerium Oxide Thin Films Grown By Dc Sputtering Method
title Effect Of Annealing Temperature On Cerium Oxide Thin Films Grown By Dc Sputtering Method
title_full Effect Of Annealing Temperature On Cerium Oxide Thin Films Grown By Dc Sputtering Method
title_fullStr Effect Of Annealing Temperature On Cerium Oxide Thin Films Grown By Dc Sputtering Method
title_full_unstemmed Effect Of Annealing Temperature On Cerium Oxide Thin Films Grown By Dc Sputtering Method
title_short Effect Of Annealing Temperature On Cerium Oxide Thin Films Grown By Dc Sputtering Method
title_sort effect of annealing temperature on cerium oxide thin films grown by dc sputtering method
topic QC1-999 Physics
url http://eprints.usm.my/48907/1/MNRG_LWF01.pdf
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