浏览全部资源
扫码关注微信
1. 中国科学院长春应用化学研究所, 稀土化学与物理开放实验室,吉林 长春,130022
2. 吉林大学, 化学学院,吉林 长春,130023
收稿日期:2006-10-26,
修回日期:2006-12-10,
纸质出版日期:2007-05-20
移动端阅览
孔丽, 甘树才, 洪广言, 张吉林. Pr<sup>3+</sup>或Sm<sup>3+</sup>掺杂YAG:Ce的发光特性及其荧光寿命[J]. 发光学报, 2007,28(3): 393-396
KONG Li, GAN Shu-cai, HONG Guang-yan, ZHANG Ji-lin. Luminescence Properties of YAG:Ce Co-doped with Pr<sup>3+</sup> or Sm<sup>3+</sup>[J]. Chinese Journal of Luminescence, 2007,28(3): 393-396
孔丽, 甘树才, 洪广言, 张吉林. Pr<sup>3+</sup>或Sm<sup>3+</sup>掺杂YAG:Ce的发光特性及其荧光寿命[J]. 发光学报, 2007,28(3): 393-396 DOI:
KONG Li, GAN Shu-cai, HONG Guang-yan, ZHANG Ji-lin. Luminescence Properties of YAG:Ce Co-doped with Pr<sup>3+</sup> or Sm<sup>3+</sup>[J]. Chinese Journal of Luminescence, 2007,28(3): 393-396 DOI:
研究了Pr
3+
Sm
3+
掺杂对YAG:Ce发射光谱及其荧光寿命的影响.观察到当掺杂Pr
3+
时
在609nm处出现Pr
3+
的发射峰
而掺杂Sm
3+
时
在616nm处呈现Sm
3+
的发射峰.掺杂Pr
3+
或Sm
3+
增加红光区的发射峰将有利于提高YAG:Ce荧光粉的显色性.实验中测定了(Y
0.95
Sm
0.01
Ce
0.04
)
3
Al
5
O
12
、(Y
0.95
Pr
0.01
Ce
0.04
)
3
Al
5
O
12
、(Y
0.96
Ce
0.04
)
3
Al
5
O
12
的荧光寿命()
观察到在YAG:Ce中掺入Pr
3+
或Sm
3+
使Ce
3+
的荧光寿命减小.实验结果表明
少量掺杂Pr
3+
或Sm
3+
并未引起基质的结构的变化.
Due to a lot of advantages
such as energy saving
high efficiency and long lifetime
white light emitting diode (W-LED) has been widely applied in many areas. The common way to fabricate W-LED is by painting a yellow-emitting phosphor on the blue LED chip. Since blue LED emits from 430nm to 480nm
the absorption energy for a better yellow-emitting phosphor should match that spectral region of LED emission. YAG:Ce
3+
shows a strong broad band absorption around 465nm and emits at about 540nm; therefore it has been used as the main yellow-emitting phosphor in W-LED. However
the weakness of W-LED composed of blue LED and YAG:Ce
3+
is the shortage of its red-emission component. To overcome this weakness
one of the following approaches could be chosen: 1.Adding some red-emitting components into YAG:Ce
3+
phosphor; 2.Doping other cations in YAG:Ce
3+
lattice. Lanthanide ions are the appropriate ones for this doping YAG:Ce
3+
since their ionic radii are very close to that of Y
3+
ion. Many papers have reported the study on lanthanide doping. In this paper
the doping effects of Pr
3+
and Sm
3+
on the luminescence properties and fluorescence lifetime of YAG:Ce were systematically studied in order to understand the rule. Phosphors were synthesized by high-temperature solid-state reaction under reducing atmosphere. The X-ray diffraction patterns presented Pr
3+
and Sm
3+
can partially replace Y
3+
and the lattice phases do not change. The doping effects of Pr
3+
and Sm
3+
on the luminescence properties and fluorescence lifetimes of (Y
0.96-x
Ln
x
Ce
0.04
)
3
Al
5
O
12
(Ln= Pr
3+
Sm
3+
) were studied. The emission and excitation spectra of the samples are recorded. In the (Y
0.96-x
Pr
x
Ce
0.04
)
3
Al
5
O
12
system the emission band of Pr
3+
was at about 609nm; and in the (Y0.96-xSmxCe0.04)3Al5O12 system the emission band of Sm
3+
was at about 616nm. So it can increase the color rendering index (CRI) of YAG:Ce phosphors doped by Pr
3+
or Sm
3+
. Fluorescence lifetimes of the Ce
3+
in (Y
0.95
Pr
0.01
Ce
0.04
)
3
Al
5
O
12
(Y
0.95
Sm
0.01
Ce
0.04
)
3
Al
5
O
12
(Y
0.96
Ce
0.04
)
3
Al
5
O
12
are measured. The lifetime decreased due to the doping of Pr
3+
or Sm
3+
in YAG:Ce
3+
.
Narukawa Y.White light LEDs[J].Optics & Photonics News,2004,15(4):25-29.[2] Rohwer L S,Srivastava A M.Development of phosphors for LEDs[J].Electrochem.Soc.Interface,2003,12(2):36-39.[3] Hu Yunsheng,Zhuang Weidong,Ye Hongqi,et al.A novel red phosphor for white light emitting diodes[J].J.Alloy.Compd.,2005,390(1-2):226-229.[4] Hu Yunsheng,Zhuang Weidong,Ye Hongqi,et al.Preparation and luminescent properties of (Ca1-xSrx)S:Eu2+ red-emitting phosphor for white LED[J].J.Lumin.,2005,111(3):139-145.[5] Zhang Shushing,Zhuang Weidong,Zhao Chunlei,et al.Study on (Y,Gd)3(Al,Ga)5O12:Ce3+ phosphor[J].J.Rare Earth,2004,22(1):118-121.[6] Matkovskii A,Sugak D,Melnyk S,et al.Colour centers in doped Gd3Ga5O12 and Y3Al5O12 laser crystal[J].J.Alloy.Compd.,2000,300-301:395-397.[7] Blazek K,Krasnikov A,Nejezchleb K,et al.Luminescence and defects creation in Ce3+ doped Lu3Al5O12 crystals[J].Phys.Stat.Sol.(b),2004,241(5):1134-1140.[8] Dobrzycki L,Bulska E,Pawlak D A,et al.Structure of YAG crystals doped/substituted with erbium and ytterbium[J].Inorg.Chem.,2004,43(24):7656-7664.[9] Batentschuk M,Osvet A,Schierning G,et al.Simultaneous excitation of Ce3+ and Eu3+ ions in Tb3Al5O12[J].Radiat.Meas.,2004,38:539-543.[10] Qiang Li,Lian Gao,Yan Dongsheng.The crystal structure and spectra of nano-scale YAG:Ce3+[J].Mater.Chem.Phys.,2000,64(1):41-44.[11] Lin Y S,Liu R S,Cheng B M,et al.Investigation of the luminescent properties of Tb3+-substituted YAG:Ce,Gd phosphors[J].J.Electrochem.Soc.,2005,152(6):J41-J45.[12] Zhou Yonghui,Lin Jun,Yu Min,et al.Synthesis-dependent luminescence properties of Y3Al5O12:Re3+ (Re=Ce,Sm,Tb) phosphors[J].Mater.Lett.,2002,56:628-636.[13] Xu Xurong,Su Mianzeng.Luminescence and Luminescence Materials[M].Beijing:Chemistry Industry Press,2004,322.[14] Hong Guangyan,Yue Shuying.Influence of Ln3+ ions on Ce3+ luminescence in CeP5O14 crystals[J].Chin.J.Lumin.(发光学报),1986,7(2):200-205 (in Chinese).[15] Tang Youwen,Hong Guangyan,Wang Wenyun,et al.Influence of Ln3+ ions on Ce3+ fluorescence lifetime in CeP5O14 crystals[J].Chin.Rare Earth Soc.(中国稀土学报),1990,8(4):320-322 (in Chinese).
0
浏览量
114
下载量
8
CSCD
关联资源
相关文章
相关作者
相关机构