摘要:磷灰石结构具有结构多样性、可提供多种发光中心格位、容易制备、物理化学性质稳定等特点,常作为发光材料基质。本论文依据磷灰石结构的组成,设计并采用高温固相法合成了一种新型的磷灰石结构Ca5Y3Na2(PO4)5(SiO4)F2,并研究了稀土离子Eu2+和Ce3+掺杂后的发光性能。使用X射线粉末衍射(XRD)确定所合成样品的结构,并利用Maud软件进行结构精修。采用荧光光谱分析所制备样品的发光性能。结果表明,我们所设计的结构为预期的磷灰石结构。Ce3+掺杂后可被紫外光激发,发射蓝紫光;Eu2+掺杂后,可被近紫外光激发,发射蓝光和红光的混合光。从激发光谱的位置,我们可以预测该样品可作为白光发光二极管(LED)用发光材料,结合发射光谱分析,Eu2+掺杂的Ca5Y3Na2(PO4)5(SiO4)F2磷灰石结构发光材料可作为LED植物生长灯用荧光粉的潜力。40038 毕业论文关键词:发光材料;LED;磷灰石结构
Luminescent properties of a novel apatite structure with Ce3+ and Eu2+ doping
Abstract: Apatite structure materials were utilized as luminescence host due to structural persity, with a variety of light emitting cells for the center, easy preparation, stable physical and chemical properties, etc. In this work, we try to design a novel apatite structure material Ca5Y3Na2(PO4)5(SiO4)F2 according to the common characterize of apatite structure, and synthesize the designed material. The luminescent properties of Ce3+ and Eu2+ doped the new apatite material were investigated, too. XRD was utilized to investigate the structure. Maud software was also utilized to determine the detail structure information. The results show that for Ce3+ doped material, it can be excited by ultraviolet light and give ultraviolet-blue light. For Eu2+ doped this material, it can be excited by near ultraviolet light and give blue and red light. According to the excitation spectra, it can be expected that Eu2+ doped this new apatite material can be used as white light emitting diodes (LED) phosphor. In addition, the blue and red light can be used to improve plants’ growing.
Key words:Luminescent material;white light emitting diodes; apatite
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