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Red photoluminescence due to energy transfer from Eu(2+) to Cr(3+) in Sr(3)Al(10)SiO(20)-SrAl(12)O(19) mixed phases
其他题名论文其他题名
Zhong R. X.; Zhang J. H.; Zhang X.; Lu S. Z.; Ren X. G.; Wang X. J.
2008
发表期刊Journal of Physics D-Applied Physics
ISSN0022-3727
卷号41期号:6
摘要Sr(3)Al(10)SiO(20)-SrAl(12)O(19), doped with Eu(2+), Cr(3+) and (Eu(2+) + Cr(3+)) is prepared by solid-state reaction and energy transfer from Eu(2+) to Cr(3+) in the phase of Sr(3)Al(10)SiO(20) is the focus of investigation. The spectrum of Sr(3)Al(10)SiO(20)-SrAl(12)O(19) : Eu(2+) shows f-d emission bands at 460 and 400 nm. Cr(3+) doped Sr(3)Al(10)SiO(20)-SrAl(12)O(19) yields emission lines at 688 and 696 nm and a broad emission band between 650 and 750 nm. The photoluminescence study and fluorescence lifetime measurements demonstrate efficient energy transfer from Eu(2+) to Cr(3+) in Sr(3)Al(10)SiO(20) : Eu(2+), Cr(3+). The emission lines peak at 688 nm and 696 nm, which, respectively, originate from (2)E-(4)A(2) transitions in the phases of SrAl(12)O(19) and Sr(3)Al(10)SiO(20). The broad emission band of Cr(3+) between 650 and 750 nm in the phase of Sr(3)Al(10)SiO(20) is considered to be the (4)T(2)-(4)A(2) transition by calculating the strength of the octahedral crystal field Dq, the Racah parameters B and C as well as by constructing the Tanabe-Sugano diagram.
收录类别SCI ; EI
语种英语
文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/26421
专题中科院长春光机所知识产出
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GB/T 7714
Zhong R. X.,Zhang J. H.,Zhang X.,et al. Red photoluminescence due to energy transfer from Eu(2+) to Cr(3+) in Sr(3)Al(10)SiO(20)-SrAl(12)O(19) mixed phases[J]. Journal of Physics D-Applied Physics,2008,41(6).
APA Zhong R. X.,Zhang J. H.,Zhang X.,Lu S. Z.,Ren X. G.,&Wang X. J..(2008).Red photoluminescence due to energy transfer from Eu(2+) to Cr(3+) in Sr(3)Al(10)SiO(20)-SrAl(12)O(19) mixed phases.Journal of Physics D-Applied Physics,41(6).
MLA Zhong R. X.,et al."Red photoluminescence due to energy transfer from Eu(2+) to Cr(3+) in Sr(3)Al(10)SiO(20)-SrAl(12)O(19) mixed phases".Journal of Physics D-Applied Physics 41.6(2008).
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