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稀土离子掺杂对长余辉发光玻璃发光性能的影响 总被引:2,自引:0,他引:2
选择制备了系列Eu^2+,Dy^3+共掺杂的硼铝酸锶长余辉发光玻璃。利用发光光谱、余辉衰减曲线、热释光谱系统研究了稀土离子掺杂对长余辉玻璃发光性能的影响。研究结果表明,不同掺量组合的Eu^2+及Dy^3+对长余辉玻璃发光性能有不同影响,在Eu^2+及Dy^3+掺量比为l:l(摩尔比)的情形下,随Eu^2+离子掺量的增多,发光性能下降;在Eu^2+及Dy^3+掺量比为1:2的情形下,随Eu^2+离子掺量的增多,发光性能增强。在此实验基础上,围绕缺陷形态及其与稀土离子间的能量传递,提出了可能的长余辉机制。 相似文献
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利用高温固相法合成了一种长余辉发光材料Gd2O2S:Ti,利用XRD测试了其结构并测试了其在紫外光激发下的发光特性;停止照射,有橙色的余辉,时间接近2h。分析该磷光体的发光和余辉产生细节,认为空穴和电子的复合导致Ti^3+的^2E→^2T2的跃迁是产生发光和余辉的原因;并根据缺陷和空位对Gd2O2S:Ti的余辉机理进行探讨,提出了余辉机理模型。 相似文献
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Synthesis and characterization of Y_2O_2S:Eu~(3+),Mg~(2+),Ti~(4+) nanorods via a solvothermal routine 总被引:1,自引:0,他引:1
Y2O2S:Eu3+,Mg2+,Ti4+ nanorods were prepared by a solvothermal procedure.Rod-like Y(OH)3 was firstly synthesized by hydrothermal method to serve as the precursor.Y2O2S:Eu3+,Mg2+,Ti4+ powders were obtained by calcinating the precursor at CS2 atmosphere.The Y2O2S:Eu3+,Mg2+,Ti4+ phosphor with diameters of 30-50 nm and lengths up to 200-400 nm inherited the rod-like shape from the precursor after calcined at CS2 atmosphere.The Y2O2S:Eu3+,Mg2+,Ti4+ nanorods showed hexagonal pure phase,good dispersion and exhibite... 相似文献
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The nature of the emission center of Eu~(2 ) in KCaF_3:Eu~(2 ) strongly depends on the preparative condi-tions.Experimental results show that there are two different d→f transition emission bands,and the origin ofthese two emission bands,their interrelationship and the effect of doping concentration on them have been dis-cussed.A Eu~(2 )-Eu~(3 ) valency change process has been proposed. 相似文献
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本文详细地研究了BaYF5和KCaF3基质中Eu^2+、Ce^3+浓度对其发光的影响,发现两基质中Eu^2+、Ce^3+的猝灭浓度都较低;提出了Eu^2+、Ce^3+的浓度猝灭机理,计算了猝灭浓度和临界距离,并与实验结果进行了比较。 相似文献
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A needle-like Eu2+ and Dy3+ co-doped BaAl2O4 long-lasting phosphor was synthesized via a hydrothermal-homogeneous precipitation method assisted by cetyl trimethyl ammonium bromide(CTAB) as a template.The crystal structure,morphology and optical properties of the composites were characterized.XRD results showed that the single-phase BaAl2O4 was formed at 900 ℃ in an active carbon atmosphere,which was much lower than that prepared by traditional solid-state reaction method.Scanning electron microscopy(SEM) and transmission electron microscopy(TEM) observation revealed that the precursor had well-dispersed distribution and showed needle-like morphology with the average diameter of about 100 nm and the length up to 1 μm.The final product,BaAl2O4:Eu2+,Dy3+ phosphor,inherited the needle-like shape from precursor via adding the surfactant CTAB.After irradiation by ultraviolet radiation with 355 nm for 5 min,the phosphors emitted bluish green color long-lasting phosphorescence corresponding to the typical emission of Eu2+ ion.Both the photoluminescence spectra and luminance decay revealed that the phosphor had efficient luminescent and long-lasting properties. 相似文献