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首页> 外文期刊>Optical Materials >Thermoluminescence and infrared stimulated luminescence in long persistent monoclinic SrAl_2O_4:Eu~(2+) ,Dy~(3+) and SrAl_2O_4:Eu~(2+) ,Nd~(3+) phosphors
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Thermoluminescence and infrared stimulated luminescence in long persistent monoclinic SrAl_2O_4:Eu~(2+) ,Dy~(3+) and SrAl_2O_4:Eu~(2+) ,Nd~(3+) phosphors

机译:热致发光和红外刺激的发光在长期持久性单斜晶体_2O_4:Eu〜(2+),Dy〜(3+)和SRAL_2O_4:EU〜(2+),ND〜(3+)磷光体

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摘要

We report on the photoluminescence, long persistence luminescence, and thermally and optically stimulated luminescence properties of SrAl2O4:Eu2+,Dy3+ and SrAl2O4:Eu2+,Nd3+ phosphors synthetized by the combustion method and annealed under a carbon atmosphere at 1150 degrees C for 6 h. XRD indicated the presence of a single monoclinic crystalline phase for both phosphors. After exposure to beta radiation, the phosphors exhibited an intense persistent luminescence lasting more than 220 h. After excitation with 375 nm light the emission spectra depict a broad band peaked at 515 nm, which is the characteristic for Eu2+ emission in SrAl2O4 phosphors, and two weak bands at about 405 and 425 nm. After beta irradiation, the Dy co-doped phosphor exhibits an intense thermoluminescence (TL) with a maximum around 60 degrees C and a weaker peak at 140 degrees C. The low temperature TL of the Nd co-doped phosphor consist of three peaks; two well-separated peaks with maxima at about 80 and 160 degrees C and the third one with the maximum near 50 degrees C, which becomes evident at doses higher than 10 Gy. Stimulation with IR light of 830 nm releases trapped charges caused by irradiation exposure, generating an intense IR stimulated luminescence (IRSL), which exhibits a typical time decay behavior for continuous wave optically stimulated luminescence. The persistence luminescence and IRSL were related to the release of electrons from the traps responsible for the 60 and 140 degrees C TL peaks in SrAl2O4:Eu2+,Dy3+ and the 80 and 160 degrees C TL peaks in SrAl2O4:Eu2+,Nd3+ phosphors, respectively.
机译:我们报道了SRAL2O4:EU2 +,DY3 +和SRAL2O4:EU2 +,由燃烧方法合成的ND3 +磷光体的热和光学刺激的发光性能,并在1150℃下在碳气氛下退火6小时。 XRD表示两种磷光体的单斜晶相的存在。暴露于β辐射后,磷光体表现出强烈的持续发光持续超过220小时。在激发后用375nm光,发射光谱描绘了在515nm处达到峰值的宽带,这是Su2 +磷光体中Eu2 +发射的特征,以及约405和425nm的两个弱带。在β辐照后,Dy掺杂的磷光体显示出强烈的热致发光(T1),最大约60℃,并且在140℃下较弱。Nd共掺杂磷光体的低温T1由三个峰组成;两个分离的峰,具有约80和160摄氏度的最大值,第三个具有最大50摄氏度的第三个峰,其在高于10Gy的剂量下变得明显。用IR光的刺激830nm释放由照射暴露引起的捕获电荷,产生强烈的IR刺激的发光(IRSL),其表现出用于连续波光学刺激的发光的典型时间衰减行为。持久性发光和IRSL与来自SRAL2O4:EU2 +,DY3 +和80和160摄氏度的80和160摄氏度分别的60和140摄氏度峰值的捕集物的释放分别。

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