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复旦大学材料科学研究所
收稿日期:1987-02-05,
纸质出版日期:1988-08-30
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张志林, 蒋雪茵, 李卓棠, 吴佩芳, 许少鸿. 硼玻璃中Dy<sup>3+</sup>及Sm<sup>3+</sup>的辐射跃迁几率和无辐射跃迁几率[J]. 发光学报, 1988,9(3): 207-212
Zhang Zhilin, Jiang Xueyin, Li Zhuotang, Wu Peifang, Xu Shaohong. RADIATIVE AND NONRADIATIVE TRANSITION PROBABILITIES OF Dy<sup>3+</sup> AND Sm<sup>3+</sup> IN BORATE GLASSES[J]. Chinese Journal of Luminescence, 1988,9(3): 207-212
张志林, 蒋雪茵, 李卓棠, 吴佩芳, 许少鸿. 硼玻璃中Dy<sup>3+</sup>及Sm<sup>3+</sup>的辐射跃迁几率和无辐射跃迁几率[J]. 发光学报, 1988,9(3): 207-212 DOI:
Zhang Zhilin, Jiang Xueyin, Li Zhuotang, Wu Peifang, Xu Shaohong. RADIATIVE AND NONRADIATIVE TRANSITION PROBABILITIES OF Dy<sup>3+</sup> AND Sm<sup>3+</sup> IN BORATE GLASSES[J]. Chinese Journal of Luminescence, 1988,9(3): 207-212 DOI:
本文研究(1-
x
)CeMgAl
11
O
19
-
x
SrAl
12
O
19
:Mn
2+
固溶体光谱学性质。Mn
3+
在固溶体中的荧光光潜由516nm绿色发射带和630-685nm红色发射带组成。前者归于占据4f格位的四面体Mn
2+
(g)离子
后者归于位于20格位的八面体Mn
2+
(r)中心。Mn
2+
(r)红色发射带随SrAl
12
O
19
含量增加而短移
x
=0时
为685nm
x
=0.8时
短移为630nm。固溶体中Ce
3+
-Mn
2+
(g和r)和Mn
2+
(g)-Mn
2+
(r)存在能量传递。荧光衰减分析表明
Mn
2+
(g)-Mn
2+
(r)能量传递是一种电偶极-电偶极相互作用的直接能量传递。随着固溶体中SrAl
12
O
19
含量的增加
Mn
2+
(g)-Mn
2+
(r)能量传递几率降低
临界距离R
0
减小。当
x
=0.8时
Mn
2+
(g)-Mn
2+
(r)传递消失。与之相反
Ce
3+
-Mn
2+
(g)能量传递则随SrAl
12
O
19
量的增高而加大。当
x
=0.8时
固溶体0.2CeMgAl
11
O
19
-0.8SrAl
12
O
19
:Mn
2+
中Ce
2+
-Mn
2+
(g)传递几率仅略低于商用荧光粉CeMgAl
11
O
19
中Ce
3+
-Tb
3+
传递几率。这类固溶体是有效的绿色发射荧光体。Mn
2+
格位(4f和2a)的晶场强度10Dq和Racah参数比C/B随SrAl
12
O
19
增加而呈减小趋势。本文表明
固溶体结构的镜面层对晶体光谱性质有大的影响。
The spectroscopic properties of the solid solutions(1-
x
) CeMgAl
11
O
19
-
x
SrAl
12
O
19
:Mn
2+
are reported. The fluorescent spectra of Mn
2+
in the solid solutions consist of two emission bands
a green band peaked at with 516nm and a red band
the peak position of which depends on
x
with 685nm for
x
=0 and 630nm for
x
=0.8. The green band arised from Mn
2+
centers in tetrahedral 4f sites (denoted as Mn
2+
(g)) and the red band originated from Mn
2+
ions in octahedral 2a position (Mn
2+
(r)).The fluorescence decay analysis and excitation spectra indicated that the energy transfer from Mn
2+
(g) to Mn
2+
(r) occurred in the solid solutions (1-
x
) CeMgAl
11
O
19
-
x
SrAl
12
O
19
doped with higher Mn
2+
concentration (≥0.4mole).
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