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Roles of crystal defects in the persistent luminescence of Eu^(2+), Dy^(3+) co-doped strontium aluminate based phosphors 被引量:3

Roles of crystal defects in the persistent luminescence of Eu^(2+), Dy^(3+) co-doped strontium aluminate based phosphors
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摘要 The roles of different point defects in persistent luminescence of SrAl2O4:Eu,Dy phosphors were investigated. The research results showed that Dyer plays an important role in the persistent luminescence of SrA1EO4:Eu, Dy phosphors. It can serve as the electron trap of suitable depth for persistent luminescence. V~ does not serve as the electron trap of suitable depth, but its existence can increase the depth of electron traps. There is interaction between the Dy^3+( DySr ) and the Eu^2+(Eu^x Sr ), and only if the distance between the Dy^3+(DySr) and the Eu^2+ (Eu^x Sr) is close enough, the Dyer can work as an effective electron trap. The point defect of V" Sr can be hole trap, but the change of its density in crystal matrix does not arouse the obvious change of persistent luminescence. The roles of different point defects in persistent luminescence of SrAl2O4:Eu,Dy phosphors were investigated. The research results showed that Dyer plays an important role in the persistent luminescence of SrA1EO4:Eu, Dy phosphors. It can serve as the electron trap of suitable depth for persistent luminescence. V~ does not serve as the electron trap of suitable depth, but its existence can increase the depth of electron traps. There is interaction between the Dy^3+( DySr ) and the Eu^2+(Eu^x Sr ), and only if the distance between the Dy^3+(DySr) and the Eu^2+ (Eu^x Sr) is close enough, the Dyer can work as an effective electron trap. The point defect of V" Sr can be hole trap, but the change of its density in crystal matrix does not arouse the obvious change of persistent luminescence.
出处 《Rare Metals》 SCIE EI CAS CSCD 2007年第4期305-310,共6页 稀有金属(英文版)
基金 This study is financially supported by the Jiangxi University of Finance and Economy (Project No. 0421205) Jiangxi Provincial Department of Education (Project No. (2007) 260)
关键词 inorganic non-metal material strontium aluminate persistent luminescence rare earth ions point defect inorganic non-metal material strontium aluminate persistent luminescence rare earth ions point defect
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  • 1DONG Wangan, YIN Qingrui, LI Yongxiang, et al. Concentration quenching of Eu2 + in SrO/Al2 O3: Eu2+ phosphor [ J ].J. Lumin. , 2002, 97:1-6.
  • 2SAKAI R, KATSUMATA T, KOMURO S, et al. Effect of composition on the phosphorescence from BaAl2 O4: Eu2 + , Dy3 +crystals [J]. J. Lumin. , 1999, 85:149-151.
  • 3SHEN Banwen. Inorganic Chemistry [M]. First Edition. Beijing: Chemical Industry Press, 2001, 504.
  • 4POORT S H M, BLOKPOEL W P, BLASSE G. Luminescence of Eu2+ in barium and strontium aluminate and gallate [ J ].Chem. Mater. , 1995, 7:1547-1553.
  • 5QIU Jianrong, HIRAO K. Long lasting phosphorescence in Eu2+ -doped calcium aluminoborate glasses [J]. J. Sol. Stat.Commun. , 1998, 106:795-810.
  • 6HOLSA Jorma, JUNGNER Hogne, LASTUSAARI Mika, et al. Persistent luminescence of Eu2 + doped alkaline earth aluminates, MAl2O4: Eu2 + [ J]. J. Alloys and Compounds, 2001 , 323/324:326-330.
  • 7JIA D, YEN W M. Enhanced VK3+ center afterglow in MgAl2O4 by doping with Ce3+ [J]. J. Lumin. , 2003, 101:115-121.
  • 8McKEEVER S W S. Thermoluminescence of Solid [M]. First Edition, New York, Cambridge University Press, 1985, 85.
  • 9KIM T K, WOO J J, CHOE H S, et al. Thermoluminescence from ultraviolet exposed MgAl2O4[J]. Radiat. Prot. Dosi. , 1999,84:297-302.

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