CONDENSED MATTER: ELECTRONIC STRUCTURE, ELECTRICAL, MAGNETIC, AND OPTICAL PROPERTIES |
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Luminescence and Site Occupancy of Eu2+ in Ba2 Ca(BO3)2 |
LI Pan-Lai**, WANG Zhi-Jun, YANG Zhi-Ping, GUO Qing-Lin
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College of Physics Science and Technology, Hebei University, Baoding 071002
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Cite this article: |
LI Pan-Lai, WANG Zhi-Jun, YANG Zhi-Ping et al 2011 Chin. Phys. Lett. 28 017801 |
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Abstract A green phosphor Ba2Ca(BO3)2:Eu2+ was synthesized by a high temperature solid–state reaction method under a reductive atmosphere. The luminescence and site occupancy of Eu2+ in Ba2Ca(BO3)2 are investigated. Ba2Ca(BO3)2:Eu2+ shows one green band (537 nm) under 400 nm near ultraviolet excitation which is suitable for UV LED. Ca2+ and Ba2+ ions in Ba2Ca(BO3)2 are replaced by Eu2+ ions, the Ba2Ca(BO3)2:Eu2+ shows a dissymmetrical emission band. The influence of Eu2+ doping concentrations on the emission intensity of Ba2Ca(BO3)2:Eu2+ is studied. It is found that the emission intensity is influenced by the Eu2+ concentration and reaches the maximum value at 2% Eu2+. According to the Dexter theory, the concentration quenching mechanisms of Eu2+ in Ba2Ca(BO3)2 are the d–dinteraction.
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Keywords:
78.55.-m
33.50.Dq
33.20.Kf
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Received: 13 August 2010
Published: 23 December 2010
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PACS: |
78.55.-m
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(Photoluminescence, properties and materials)
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33.50.Dq
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(Fluorescence and phosphorescence spectra)
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33.20.Kf
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(Visible spectra)
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[1] Ma L, Wang D J, Mao Z Y, Lu Q F and Yuan Z H 2008 Appl. Phys. Lett. 93 144101
[2] Guo C, Luan L, Ding X, Zhang F, Shi F G, Gao F and Liang L 2009 Appl. Phys. B 95 779
[3] Li P L, Wang Z J, Yang Z P and Guo Q L 2010 J. Electrochem. Soc. 157 H504
[4] Nakamura S, Mukai T and Senoh M 1994 J. Appl. Phys. 76 8189
[5] Yang W J and Chen T M 2007 Appl. Phys. Lett. 90 171908
[6] Tang Y S, Hu S F, Ke W C, Lin C C, Bagka N C and Liu R S 2008 Appl. Phys. Lett. 93 131114
[7] Kim T G, Lee H S, Lin C C, Kim T, Liu R S, Chan T S and Im S J 2010 Appl. Phys. Lett. 96 061904
[8] Nakamura S and Fasol G 1996 The Blue Laser Diode (Berlin: Springer) p 1
[9] Kuo C H, Sheu J K, Chang S J, Su Y K, Wu L W, Tsai J M, Liu C H and Wu R K 2003 Jpn. J. Appl. Phys. I 42 2284
[10] Zhang Q, Wang J, Zhang M and Su Q 2008 Appl. Phys. B 92 195
[11] Du H, Sun J, Xia Z and Sun J 2009 Appl. Phys. B 96 459
[12] Liu J, Wu Z and Gong M 2008 Appl. Phys. B 93 583
[13] Lim M A, Park J K, Kim C H and Park H D 2003 J. Mater. Sci. Lett. 22 1351
[14] Chang X K and Chen T M 2007 Appl. Phys. Lett. 91 081902
[15] Lin H H, Liang H B, Han B, Zhong J P, Su Q, Dorenbos P, Birowosuto M D, Zhang G B, Fu Y B and Wu W Q 2007 Phys. Rev. B 76 035117
[16] Akella A and Keszler D A 1995 Main Group Met. Chem. 18 35
[17] Huang Z P, Jing X P and Yu H 1986 Chem. J. Chin. Univer. 7 759 (in Chinese)
[18] Van Uitert L G 1984 J. Lumin. 29 1
[19] Liu X R and Xu W L 1993 J. Rare Earths 11 100
[20] Dexter D L and Schulman J H 1954 J. Chem. Phys. 22 1063
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