Structural and luminescent characteristic of Sm3+ doped magnesium sulfide borate orange-red phosphor for white LED

Polycrystalline compositions based on MgO, SO3 and B2O3 have both scientific and technological importance because of their useful applications. Doping with rare earth elements not only due to a rearrangement in the structure, but also to variation in the luminescence properties. Magnesium sulfide bo...

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Main Authors: Dalhatu, Saddiq Abubakar, Hussin, Rosli, Deraman, Karim, Bulus, Ibrahim, Abdullahi Yamusa, Yamusa, Mohammed Aliyu, Aliyu
Format: Article
Language:English
Published: Penerbit UTM Press 2017
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Online Access:http://eprints.utm.my/id/eprint/80672/1/RosliHussin2017_StructuralandluminescentCharacteristicofSm3%2B.pdf
http://eprints.utm.my/id/eprint/80672/
https://dx.doi.org/10.11113/mjfas.v0n0.690
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Institution: Universiti Teknologi Malaysia
Language: English
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spelling my.utm.806722019-06-27T06:15:15Z http://eprints.utm.my/id/eprint/80672/ Structural and luminescent characteristic of Sm3+ doped magnesium sulfide borate orange-red phosphor for white LED Dalhatu, Saddiq Abubakar Hussin, Rosli Deraman, Karim Bulus, Ibrahim Abdullahi Yamusa, Yamusa Mohammed Aliyu, Aliyu QC Physics Polycrystalline compositions based on MgO, SO3 and B2O3 have both scientific and technological importance because of their useful applications. Doping with rare earth elements not only due to a rearrangement in the structure, but also to variation in the luminescence properties. Magnesium sulfide borate doped samarium oxide (MgSBO3:Sm3+) phosphors were prepared by solid state reaction and their structural and luminescence characteristic were studied and reported. IR and Raman spectral studies have been made to explore the presence of functional groups and various structural units in the prepared Polycrystalline. The formation of SO4, BO4, BO3, B-O-B and S-O-B structural units have been investigated. The emission and excitation properties were studied. And the results show that the emission and excitation spectra of these phosphors can be excited by ultraviolet (UV) 341, 370 and 403 nm light, and emit green, yellow and red light with intense peak at 601 nm, which are nicely in accordance with the widely applied near- UV LED chip. The emission spectral intensity of Sm3+ ions in the titled phosphors increases up to 1 mol% of Sm3+ ions and then decreases for 1.5 mol%. These results indicate that MgSBO3:Sm3+phosphor could be a potential suitable orange-red emitting phosphor candidate for white LEDs with excitation of a ~403 nm near UV LED chip. Penerbit UTM Press 2017 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/80672/1/RosliHussin2017_StructuralandluminescentCharacteristicofSm3%2B.pdf Dalhatu, Saddiq Abubakar and Hussin, Rosli and Deraman, Karim and Bulus, Ibrahim and Abdullahi Yamusa, Yamusa and Mohammed Aliyu, Aliyu (2017) Structural and luminescent characteristic of Sm3+ doped magnesium sulfide borate orange-red phosphor for white LED. Malaysian Journal of Fundamental and Applied Sciences, 13 (4). pp. 807-811. ISSN 2289-5981 https://dx.doi.org/10.11113/mjfas.v0n0.690 DOI:10.11113/mjfas.v0n0.690
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/
language English
topic QC Physics
spellingShingle QC Physics
Dalhatu, Saddiq Abubakar
Hussin, Rosli
Deraman, Karim
Bulus, Ibrahim
Abdullahi Yamusa, Yamusa
Mohammed Aliyu, Aliyu
Structural and luminescent characteristic of Sm3+ doped magnesium sulfide borate orange-red phosphor for white LED
description Polycrystalline compositions based on MgO, SO3 and B2O3 have both scientific and technological importance because of their useful applications. Doping with rare earth elements not only due to a rearrangement in the structure, but also to variation in the luminescence properties. Magnesium sulfide borate doped samarium oxide (MgSBO3:Sm3+) phosphors were prepared by solid state reaction and their structural and luminescence characteristic were studied and reported. IR and Raman spectral studies have been made to explore the presence of functional groups and various structural units in the prepared Polycrystalline. The formation of SO4, BO4, BO3, B-O-B and S-O-B structural units have been investigated. The emission and excitation properties were studied. And the results show that the emission and excitation spectra of these phosphors can be excited by ultraviolet (UV) 341, 370 and 403 nm light, and emit green, yellow and red light with intense peak at 601 nm, which are nicely in accordance with the widely applied near- UV LED chip. The emission spectral intensity of Sm3+ ions in the titled phosphors increases up to 1 mol% of Sm3+ ions and then decreases for 1.5 mol%. These results indicate that MgSBO3:Sm3+phosphor could be a potential suitable orange-red emitting phosphor candidate for white LEDs with excitation of a ~403 nm near UV LED chip.
format Article
author Dalhatu, Saddiq Abubakar
Hussin, Rosli
Deraman, Karim
Bulus, Ibrahim
Abdullahi Yamusa, Yamusa
Mohammed Aliyu, Aliyu
author_facet Dalhatu, Saddiq Abubakar
Hussin, Rosli
Deraman, Karim
Bulus, Ibrahim
Abdullahi Yamusa, Yamusa
Mohammed Aliyu, Aliyu
author_sort Dalhatu, Saddiq Abubakar
title Structural and luminescent characteristic of Sm3+ doped magnesium sulfide borate orange-red phosphor for white LED
title_short Structural and luminescent characteristic of Sm3+ doped magnesium sulfide borate orange-red phosphor for white LED
title_full Structural and luminescent characteristic of Sm3+ doped magnesium sulfide borate orange-red phosphor for white LED
title_fullStr Structural and luminescent characteristic of Sm3+ doped magnesium sulfide borate orange-red phosphor for white LED
title_full_unstemmed Structural and luminescent characteristic of Sm3+ doped magnesium sulfide borate orange-red phosphor for white LED
title_sort structural and luminescent characteristic of sm3+ doped magnesium sulfide borate orange-red phosphor for white led
publisher Penerbit UTM Press
publishDate 2017
url http://eprints.utm.my/id/eprint/80672/1/RosliHussin2017_StructuralandluminescentCharacteristicofSm3%2B.pdf
http://eprints.utm.my/id/eprint/80672/
https://dx.doi.org/10.11113/mjfas.v0n0.690
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