Luminescence properties of magnesium phosphate glass doped samarium

Samarium doped magnesium phosphate glass having a composition of [P 2O 5] 50-x-[MgO] 50-[Sm 2O 3] x, with 0≤:x≤:4 mol% were prepared by melt-quenching method. The emission spectra were recorded using the photoluminescence spectrometer in the range of 540-730 nm at room temperature after being excite...

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Main Authors: Sahar, Md. Rahim, Mohammad Yusoff, Nurulhuda, Ghoshal, Sib Krishna, Rohani, Md. Supar, Hamzah, Khaidzir, Arifin, R.
Format: Book Section
Published: Trans Tech Publications 2012
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Online Access:http://eprints.utm.my/id/eprint/35708/
http://dx.doi.org/10.4028/www.scientific.net/AMR.501.111
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spelling my.utm.357082017-02-04T06:00:13Z http://eprints.utm.my/id/eprint/35708/ Luminescence properties of magnesium phosphate glass doped samarium Sahar, Md. Rahim Mohammad Yusoff, Nurulhuda Ghoshal, Sib Krishna Rohani, Md. Supar Hamzah, Khaidzir Arifin, R. Q Science QD Chemistry Samarium doped magnesium phosphate glass having a composition of [P 2O 5] 50-x-[MgO] 50-[Sm 2O 3] x, with 0≤:x≤:4 mol% were prepared by melt-quenching method. The emission spectra were recorded using the photoluminescence spectrometer in the range of 540-730 nm at room temperature after being excited at 403 nm. It was found that the emission spectrum of Sm 3+consisted of four emission bands at ∼559.76 nm, ∼597.32 nm, ∼641.55 nm and ∼705.57 nm which were assign as a transition of 4G 5/2→ 6H 5/2, 4G 5/2 → 6H 7/2, 4G 5/2→ 6H 9/2 and 4G 5/2→ 6H 11/2 respectively. The transition of 4G 5/2→ 6H 7/2 is detected as the strongest orange (597.32 nm) luminescence peaks thus dominates the transition. Trans Tech Publications 2012 Book Section PeerReviewed Sahar, Md. Rahim and Mohammad Yusoff, Nurulhuda and Ghoshal, Sib Krishna and Rohani, Md. Supar and Hamzah, Khaidzir and Arifin, R. (2012) Luminescence properties of magnesium phosphate glass doped samarium. In: Advanced Materials Research. Trans Tech Publications, Switzerland, pp. 111-115. ISBN 978-303785402-0 http://dx.doi.org/10.4028/www.scientific.net/AMR.501.111 DOI:10.4028/www.scientific.net/AMR.501.111
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 Q Science
QD Chemistry
spellingShingle Q Science
QD Chemistry
Sahar, Md. Rahim
Mohammad Yusoff, Nurulhuda
Ghoshal, Sib Krishna
Rohani, Md. Supar
Hamzah, Khaidzir
Arifin, R.
Luminescence properties of magnesium phosphate glass doped samarium
description Samarium doped magnesium phosphate glass having a composition of [P 2O 5] 50-x-[MgO] 50-[Sm 2O 3] x, with 0≤:x≤:4 mol% were prepared by melt-quenching method. The emission spectra were recorded using the photoluminescence spectrometer in the range of 540-730 nm at room temperature after being excited at 403 nm. It was found that the emission spectrum of Sm 3+consisted of four emission bands at ∼559.76 nm, ∼597.32 nm, ∼641.55 nm and ∼705.57 nm which were assign as a transition of 4G 5/2→ 6H 5/2, 4G 5/2 → 6H 7/2, 4G 5/2→ 6H 9/2 and 4G 5/2→ 6H 11/2 respectively. The transition of 4G 5/2→ 6H 7/2 is detected as the strongest orange (597.32 nm) luminescence peaks thus dominates the transition.
format Book Section
author Sahar, Md. Rahim
Mohammad Yusoff, Nurulhuda
Ghoshal, Sib Krishna
Rohani, Md. Supar
Hamzah, Khaidzir
Arifin, R.
author_facet Sahar, Md. Rahim
Mohammad Yusoff, Nurulhuda
Ghoshal, Sib Krishna
Rohani, Md. Supar
Hamzah, Khaidzir
Arifin, R.
author_sort Sahar, Md. Rahim
title Luminescence properties of magnesium phosphate glass doped samarium
title_short Luminescence properties of magnesium phosphate glass doped samarium
title_full Luminescence properties of magnesium phosphate glass doped samarium
title_fullStr Luminescence properties of magnesium phosphate glass doped samarium
title_full_unstemmed Luminescence properties of magnesium phosphate glass doped samarium
title_sort luminescence properties of magnesium phosphate glass doped samarium
publisher Trans Tech Publications
publishDate 2012
url http://eprints.utm.my/id/eprint/35708/
http://dx.doi.org/10.4028/www.scientific.net/AMR.501.111
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score 13.160551