Physical, absorption and photoluminescence performance of Eu3+ doped lithium chloride tellurite glass

A series of (74.4-x) TeO2 – (4.3) LiO2 – (21.3) LiCl – (x) Eu2O3 with 0.0 ≤ x ≤ 2.0 mol % has been made using melt-quenching technique and their optical characteristic has been studied. The present works cover the preparation of the glass sample and the effects of Eu3+ on the physical properties, ab...

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Main Authors: Syed Yaacob, Syariffah Nurathirah, Sahar, M. R., Jupri, Siti Aishah, Sazali, E. S., Zainal, Roslinda, Marwoto, Putut
Format: Conference or Workshop Item
Published: 2020
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Online Access:http://eprints.utm.my/id/eprint/92879/
http://dx.doi.org/10.4028/www.scientific.net/SSP.307.307
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Institution: Universiti Teknologi Malaysia
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spelling my.utm.928792021-10-28T10:18:12Z http://eprints.utm.my/id/eprint/92879/ Physical, absorption and photoluminescence performance of Eu3+ doped lithium chloride tellurite glass Syed Yaacob, Syariffah Nurathirah Sahar, M. R. Jupri, Siti Aishah Sazali, E. S. Zainal, Roslinda Marwoto, Putut QC Physics A series of (74.4-x) TeO2 – (4.3) LiO2 – (21.3) LiCl – (x) Eu2O3 with 0.0 ≤ x ≤ 2.0 mol % has been made using melt-quenching technique and their optical characteristic has been studied. The present works cover the preparation of the glass sample and the effects of Eu3+ on the physical properties, absorption and photoluminescence behaviour of the lithium chloride tellurite glass. The physical properties such as density and molar volume are determined. It is found that the density and molar volume presents fluctuation trends. As the samples are excited at 393 nm, six emission peaks have been observed at 532, 552, 586, 613, 649, and 697 nm indicating the transitions of5D1 →7F1,5D0 →7F0,5D0 →7F1,5D0 →7F2,5D0 →7F3 and5D0 →7F4 respectively. It is observed that transition5D0 →7F2 shows the highest intensity. The emission intensity increases with the increment of Eu2O3 concentration. The high-intensity ratios of 1.88 observed for glass sample contain 2.0 mol % Eu2O3 concentrations indicate a greater degree of Eu-O-covalency and possess the better quality of host matrix. 2020 Conference or Workshop Item PeerReviewed Syed Yaacob, Syariffah Nurathirah and Sahar, M. R. and Jupri, Siti Aishah and Sazali, E. S. and Zainal, Roslinda and Marwoto, Putut (2020) Physical, absorption and photoluminescence performance of Eu3+ doped lithium chloride tellurite glass. In: 30th Regional Conference of Solid State Science and Technology, RCSSST 2018, 6 - 8 November 2019, Melaka, Malaysia. http://dx.doi.org/10.4028/www.scientific.net/SSP.307.307
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic QC Physics
spellingShingle QC Physics
Syed Yaacob, Syariffah Nurathirah
Sahar, M. R.
Jupri, Siti Aishah
Sazali, E. S.
Zainal, Roslinda
Marwoto, Putut
Physical, absorption and photoluminescence performance of Eu3+ doped lithium chloride tellurite glass
description A series of (74.4-x) TeO2 – (4.3) LiO2 – (21.3) LiCl – (x) Eu2O3 with 0.0 ≤ x ≤ 2.0 mol % has been made using melt-quenching technique and their optical characteristic has been studied. The present works cover the preparation of the glass sample and the effects of Eu3+ on the physical properties, absorption and photoluminescence behaviour of the lithium chloride tellurite glass. The physical properties such as density and molar volume are determined. It is found that the density and molar volume presents fluctuation trends. As the samples are excited at 393 nm, six emission peaks have been observed at 532, 552, 586, 613, 649, and 697 nm indicating the transitions of5D1 →7F1,5D0 →7F0,5D0 →7F1,5D0 →7F2,5D0 →7F3 and5D0 →7F4 respectively. It is observed that transition5D0 →7F2 shows the highest intensity. The emission intensity increases with the increment of Eu2O3 concentration. The high-intensity ratios of 1.88 observed for glass sample contain 2.0 mol % Eu2O3 concentrations indicate a greater degree of Eu-O-covalency and possess the better quality of host matrix.
format Conference or Workshop Item
author Syed Yaacob, Syariffah Nurathirah
Sahar, M. R.
Jupri, Siti Aishah
Sazali, E. S.
Zainal, Roslinda
Marwoto, Putut
author_facet Syed Yaacob, Syariffah Nurathirah
Sahar, M. R.
Jupri, Siti Aishah
Sazali, E. S.
Zainal, Roslinda
Marwoto, Putut
author_sort Syed Yaacob, Syariffah Nurathirah
title Physical, absorption and photoluminescence performance of Eu3+ doped lithium chloride tellurite glass
title_short Physical, absorption and photoluminescence performance of Eu3+ doped lithium chloride tellurite glass
title_full Physical, absorption and photoluminescence performance of Eu3+ doped lithium chloride tellurite glass
title_fullStr Physical, absorption and photoluminescence performance of Eu3+ doped lithium chloride tellurite glass
title_full_unstemmed Physical, absorption and photoluminescence performance of Eu3+ doped lithium chloride tellurite glass
title_sort physical, absorption and photoluminescence performance of eu3+ doped lithium chloride tellurite glass
publishDate 2020
url http://eprints.utm.my/id/eprint/92879/
http://dx.doi.org/10.4028/www.scientific.net/SSP.307.307
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