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Fabrication and Properties of Ce3+ and Tb3+ Co-doped Ca2SrAl2O6 Phosphor

机译:Ce3 +和Tb3 +共掺杂Ca2SrAl2O6荧光粉的制备及性能

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In this study, a novel green phosphor Ca2SrAl2O6:Ce3+,Tb3+ were prepared by solid state method. The crystal structure and particle morphology of phosphors were measured by X-ray diffraction (XRD) and scanning electron microscopy (SEM). The result indicated that the phosphor belonged to a single Ca2SrAl2O6 phase and crystalline grain sizes were about 2.0~5.0 μm. The excitation and emission spectra were studied in this paper. Monitored at 545 nm, the excitation spectrum consisted of a broad band at UV region (320-400 nm), which was attributed to the abstract of Ce3+ and Tb3+ ions. Excited by 360 nm UV light, the emission spectrum was composed of four groups narrow band and the emission peaks located at 497, 545, 595 and 623nm, respectively. Luminescent intensity increased with Tb3+ and Ce3+ ions concentration and it would reach the maximum when the activator molar fraction was 0.04 for the highest emission intensity at 545 nm. Concentration quenching would occur if the activator concentration exceeded 0.04 mol-1. Li2CO3 could be used for flux and Li+ ion was used for charge compensation in this experiment. Thus, Ca2SrAl2O6:Ce3+, Tb3+ phosphor was a good candidate of green phosphor for UV based white LED.
机译:本研究以固态法制备了新型绿色荧光粉Ca2SrAl2O6:Ce3 +,Tb3 +。通过X射线衍射(XRD)和扫描电子显微镜(SEM)测量了磷光体的晶体结构和颗粒形态。结果表明,荧光粉属于单一的Ca2SrAl2O6相,晶粒尺寸约为2.0〜5.0μm。对激发和发射光谱进行了研究。在545 nm处监测,激发光谱由UV区(320-400 nm)处的宽带组成,这归因于Ce3 +和Tb3 +离子的抽象。在360 nm紫外光的激发下,发射光谱由四组窄带组成,发射峰分别位于497、545、595和623nm。发光强度随Tb3 +和Ce3 +离子浓度的增加而增加,并且在545 nm处的最高发射强度下,当活化剂摩尔分数为0.04时,发光强度将达到最大值。如果活化剂浓度超过0.04 mol-1,则会发生浓度猝灭。在该实验中,Li2CO3可以用作通量,而Li +离子可以用于电荷补偿。因此,Ca2SrAl2O6:Ce3 +,Tb3 +磷光体是用于基于UV的白色LED的绿色磷光体的良好候选者。

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