首页 | 本学科首页   官方微博 | 高级检索  
     检索      

碱金属离子,Gd3+,Ce3+共掺杂的Lu3Al5O12陶瓷粉体的光学性能
引用本文:柏云凤,王林香,李晴,阿热帕提·夏克尔.碱金属离子,Gd3+,Ce3+共掺杂的Lu3Al5O12陶瓷粉体的光学性能[J].光子学报,2021(4):163-171.
作者姓名:柏云凤  王林香  李晴  阿热帕提·夏克尔
作者单位:新疆师范大学物理与电子工程学院;新疆师范大学矿物发光及其微结构重点实验室;新疆师范大学新型光源与微纳光学实验室
基金项目:新疆维吾尔自治区自然科学基金(No.2017D01A60);自治区高校科研计划(No.XJEDU2018Y032)。
摘    要:用高温固相法制备了(GdxMyLu0.99-x-y)3Al5O12:1%Ce3+(x=0,0.01,0.25,0.5,0.75,y=0,0.005,0.01,0.02,0.05,0.1,M=Li+,Na+,K+,Cs+)系列陶瓷粉体。X射线衍射仪对合成粉末微结构进行表征,FLS920光谱仪测量样品的激发光谱、发射光谱和荧光寿命,CIE色度系统分析合成材料的色坐标。X射线衍射仪结果显示,不同浓度碱金属离子、Gd3+、Ce3+共掺杂Lu3Al5O12样品仍为立方晶相,但随着碱金属离子、Gd3+、Ce3+掺杂浓度的增加,合成样品衍射峰稍有向小角度偏移。在350 nm激发下,与Lu2.97Al_5O12:1%Ce3+样品相比,共掺杂Gd3+后的样品在511 nm附近发射强度降低且出现明显红移,随着Gd3+浓度增加,Ce3+能级寿命逐渐减小,范围为35~60 ns。与掺杂1%Ce3+,1%Gd3+样品比较,分别共掺杂2%的Li+、Na+、K+和1%的Cs+后样品发光强度提高了5.1倍,2.93倍,1.79倍,1.28倍,同时样品中Ce3+寿命继续减小。分别在λ=254.0 nm和λ=365.0 nm紫外灯照射下,随着Gd3+掺杂浓度的增加,观察到合成样品从深黄绿色变化为暗红色,色坐标显示样品发光由黄绿光区逐渐移动到红光区域,且共掺杂碱金属离子后,粉体的发光更亮。

关 键 词:陶瓷闪烁体  碱金属离子  Gd3+  Ce3+共掺杂Lu3Al5O12  光谱红移  紫外灯照射  发光性质  能级寿命  色度坐标

Alkali Metal Ion,Gd3+,Ce3+Co-doped Lu3Al5O12 Optical Properties of Ceramic Powder
Institution:(College of Physics and Electronic Engineering,Xinjiang Normai University,Urumqi 830054,China;Key Laboratory of Mineral Luminescence and Microstructure,Xinjiang Normal University,Urumqi 830054,China;Laboratory of Novel Light Source and Micro/Nano-Optics,Xinjiang Normal University,Urumqi 830054,China)
Abstract:(GdxMyLu0.99-x-y)3Al5O12:1%Ce3+(x=0,0.01,0.25,0.5,0.75,y=0,0.005,0.01,0.02,0.05,0.1,M=Li+,Na+,K+,Cs+)series ceramic powders were synthesized by high temperature solid phase method.The microstructure of the sample was characterized by XRD,the excitation spectrum,emission spectrum and fluorescence lifetime of the sample were measured by FLS920 spectrometer,and the color coordinate of the sample was analyzed by the CIE chromaticity system.XRD results show that the Lu3Al5O12 samples co-doped with different concentrations of alkali metal ions、Gd3+and Ce3+are still cubic crystal phases,but with the increase of alkali metal ions,Gd3+and Ce3+doping concentrations,the diffraction peaks of the samples shift slightly to a small angle.Under the excitation of 350 nm,compared with the Lu2.97Al5O12:1%Ce3+sample,the emission intensity of the sample co-doped with Gd3+at around511 nm decreased and appeared a significant red shift.With the increase of the doped Gd3+concentration,the Ce3+energy level lifetime gradually decreased.The range is 35~60 ns.Compared with the sample doped with 1%Ce3+and 1%Gd3+,the luminescence intensity of the sample doped with 2%Li+,2%Na+,2%K+and 1%Cs+increased by 5.1 times and 2.93 times,respectively.At this time,the lifetime of Ce3+in the sample continued to decrease.When the samples were irradiated under UV lamps withλ=254 nm andλ=365 nm,it was observed that with the increase of Gd3+doping concentration,the color of the sample changed from dark yellow-green to dark red.The color coordinates show that the light-emitting area of the sample gradually moves from the yellow-green light area to the red light area.After co-doping with alkali metal ions,the sample emits brighter.
Keywords:Ceramic scintillator  Alkali metal ions  Gd3+  Ce3+co-doped with Lu3Al5O12  Spectral redshift  UV lamp irradiation  Luminous properties  Energy level lifetime  Chromaticity coordinates
本文献已被 CNKI 维普 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号