Eu and dy co-activated SrB2Si2O8 blue emitting phosphor: synthesis and luminescence characteristics

The main focus in this research was to understand the influence of Dy3+ and Eu3+ doping/co-doping and sintering atmosphere on the luminescence properties of SrB2Si2O8. Single phase Eu and Dy doped/co-doped SrB2Si2O8 ceramics were synthesized in different atmosphere through solid state reaction techn...

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Main Authors: Leow, T.Q., Hussin, R., Ibrahim, Z., Deraman, K., Shamsuri, W.N.W., Lintang, H.O.
Format: Article
Language:English
Published: Universiti Kebangsaan Malaysia 2015
Online Access:http://journalarticle.ukm.my/8952/1/16_T.Q._Leow_.pdf
http://journalarticle.ukm.my/8952/
http://www.ukm.my/jsm/malay_journals/jilid44bil5_2015/KandunganJilid44Bil5_2015.html
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spelling my-ukm.journal.89522016-12-14T06:48:32Z http://journalarticle.ukm.my/8952/ Eu and dy co-activated SrB2Si2O8 blue emitting phosphor: synthesis and luminescence characteristics Leow, T.Q. Hussin, R. Ibrahim, Z. Deraman, K. Shamsuri, W.N.W. Lintang, H.O. The main focus in this research was to understand the influence of Dy3+ and Eu3+ doping/co-doping and sintering atmosphere on the luminescence properties of SrB2Si2O8. Single phase Eu and Dy doped/co-doped SrB2Si2O8 ceramics were synthesized in different atmosphere through solid state reaction technique. An inexpensive method was occupied to provide reducing sintering atmosphere. Europium doped SrB2Si2O8 exhibit unusual reduction from trivalent to a divalent oxidation state even in an oxidizing atmosphere. We also discovered co-doping with Dy3+ ions produced further europium reduction in this phosphor. By manipulating the sintering condition and co-doping, a reddish-purple to blue tune-able phosphor under 390 nm excitations were produced and their Commission International del’Eclairage (CIE) color coordination were calculated and plotted in a CIE 1931 diagram. Photoluminescence spectra of the Eu2+/Eu3+ and Dy3+ co-doped SrB2Si2O8 phosphor showed energy transfer from Dy3+ to Eu3+ and Eu2+ which was observable in Dy3+ f-f excitation transitions and the Dy-O charge transfer bands. A weak 777 nm emission from 3p5P to 3s5S0 transition of O2- ions were observed in all the samples. The excitation and emission peaks of f - f transition from Dy3+ and Eu3+ as well as 4f - 5d transition of Eu2+ were also discussed. The long excitation band in ultraviolet (UV) region from these doped/co-doped SrB2Si2O8 ceramics produced phosphors with efficient UV excitation for solid state lighting. Universiti Kebangsaan Malaysia 2015-05 Article PeerReviewed application/pdf en http://journalarticle.ukm.my/8952/1/16_T.Q._Leow_.pdf Leow, T.Q. and Hussin, R. and Ibrahim, Z. and Deraman, K. and Shamsuri, W.N.W. and Lintang, H.O. (2015) Eu and dy co-activated SrB2Si2O8 blue emitting phosphor: synthesis and luminescence characteristics. Sains Malaysiana, 44 (5). pp. 753-760. ISSN 0126-6039 http://www.ukm.my/jsm/malay_journals/jilid44bil5_2015/KandunganJilid44Bil5_2015.html
institution Universiti Kebangsaan Malaysia
building Perpustakaan Tun Sri Lanang Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Kebangsaan Malaysia
content_source UKM Journal Article Repository
url_provider http://journalarticle.ukm.my/
language English
description The main focus in this research was to understand the influence of Dy3+ and Eu3+ doping/co-doping and sintering atmosphere on the luminescence properties of SrB2Si2O8. Single phase Eu and Dy doped/co-doped SrB2Si2O8 ceramics were synthesized in different atmosphere through solid state reaction technique. An inexpensive method was occupied to provide reducing sintering atmosphere. Europium doped SrB2Si2O8 exhibit unusual reduction from trivalent to a divalent oxidation state even in an oxidizing atmosphere. We also discovered co-doping with Dy3+ ions produced further europium reduction in this phosphor. By manipulating the sintering condition and co-doping, a reddish-purple to blue tune-able phosphor under 390 nm excitations were produced and their Commission International del’Eclairage (CIE) color coordination were calculated and plotted in a CIE 1931 diagram. Photoluminescence spectra of the Eu2+/Eu3+ and Dy3+ co-doped SrB2Si2O8 phosphor showed energy transfer from Dy3+ to Eu3+ and Eu2+ which was observable in Dy3+ f-f excitation transitions and the Dy-O charge transfer bands. A weak 777 nm emission from 3p5P to 3s5S0 transition of O2- ions were observed in all the samples. The excitation and emission peaks of f - f transition from Dy3+ and Eu3+ as well as 4f - 5d transition of Eu2+ were also discussed. The long excitation band in ultraviolet (UV) region from these doped/co-doped SrB2Si2O8 ceramics produced phosphors with efficient UV excitation for solid state lighting.
format Article
author Leow, T.Q.
Hussin, R.
Ibrahim, Z.
Deraman, K.
Shamsuri, W.N.W.
Lintang, H.O.
spellingShingle Leow, T.Q.
Hussin, R.
Ibrahim, Z.
Deraman, K.
Shamsuri, W.N.W.
Lintang, H.O.
Eu and dy co-activated SrB2Si2O8 blue emitting phosphor: synthesis and luminescence characteristics
author_facet Leow, T.Q.
Hussin, R.
Ibrahim, Z.
Deraman, K.
Shamsuri, W.N.W.
Lintang, H.O.
author_sort Leow, T.Q.
title Eu and dy co-activated SrB2Si2O8 blue emitting phosphor: synthesis and luminescence characteristics
title_short Eu and dy co-activated SrB2Si2O8 blue emitting phosphor: synthesis and luminescence characteristics
title_full Eu and dy co-activated SrB2Si2O8 blue emitting phosphor: synthesis and luminescence characteristics
title_fullStr Eu and dy co-activated SrB2Si2O8 blue emitting phosphor: synthesis and luminescence characteristics
title_full_unstemmed Eu and dy co-activated SrB2Si2O8 blue emitting phosphor: synthesis and luminescence characteristics
title_sort eu and dy co-activated srb2si2o8 blue emitting phosphor: synthesis and luminescence characteristics
publisher Universiti Kebangsaan Malaysia
publishDate 2015
url http://journalarticle.ukm.my/8952/1/16_T.Q._Leow_.pdf
http://journalarticle.ukm.my/8952/
http://www.ukm.my/jsm/malay_journals/jilid44bil5_2015/KandunganJilid44Bil5_2015.html
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score 13.222552