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Effect of annealing conditions on structural and luminescencent properties of Eu3+-doped Gd2Ti2O7 thin films

Authors :
Antić, Željka
Prashanthi, Kovur
Ćulubrk, Sanja
Vuković, Katarina
Dramićanin, Miroslav
Thundat, Thomas
Antić, Željka
Prashanthi, Kovur
Ćulubrk, Sanja
Vuković, Katarina
Dramićanin, Miroslav
Thundat, Thomas
Source :
Applied Surface Science
Publication Year :
2016

Abstract

Here we report on preparation of Eu3+-doped Gd(2)Ti(2)O(7)pyrochlore luminescent thin films by pulsed laser deposition technique and their structural, morphological and optical characterization. The influence of annealing temperature and background gas (air vs. argon) on film photoluminescence is examined fort he optimization of post-deposition annealing conditions. As-deposited amorphous films become pure pyrochlore crystalline after calcination at temperatures higher than 1000 degrees C. Atomic force microscopy showed increase in the grain size from similar to 20 nm in the as-deposited to similar to 60 nm in the crystalline sample annealed at 1100 degrees C. Scanning electron microscopy showed dense films with the uniform thickness of about 700 nm. Luminescence spectra of crystalline films were complex and composed of better resolved emission lines than in the amorphous sample. Emission spectra showed that symmetry of Eu3+ sites become disturbed in annealed films due to the extrinsic thermal stress. Films treated in argon displayed similar emission and excitation spectral features like air-treated ones, but with better resolved emissionlines. Calculated quantum efficiency of emission showed that optimization of annealing conditions led to an enhancement of films luminescence. The highest quantum efficiency of emission and the longestlife time is found for the sample annealed at 1100 degrees C in presence of argon. Crown Copyright (C) 2015 Published by Elsevier B. V. All rights reserved.

Details

Database :
OAIster
Journal :
Applied Surface Science
Notes :
Applied Surface Science
Publication Type :
Electronic Resource
Accession number :
edsoai.on1363252813
Document Type :
Electronic Resource