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MxCa2-xSiO4:Ce3+,Al3+(M=Mg,Sr,Ba荧光粉的结构与发光特性研究
Structures and Luminescent Properties of MxCa2-xSiO4:Ce3+,Al3+(M=Mg,Sr,Ba) Phosphors
【摘要】 采用高温固相法合成了一系列MxCa2-xSiO4:0.5mol%Ce3+,4mol%Al3+(M=Mg,Sr,Ba;x=0.05,0.1,0.15,0.2)荧光粉,通过X射线衍射仪、扫描电镜、荧光光谱仪对荧光粉的结构、形貌和光学性能进行了表征。结果表明,Mg2+掺杂量在x=0.05时合成的荧光粉物相与未掺Mg2+时一致,为γ-Ca2SiO4;在450nm激发下特征峰位于565nm,主要源于Ce3+的5d→2F7/2和5d→2F5/2跃迁;Mg2+掺杂量在x=0.10.2时,荧光粉物相变为β-Ca2SiO4,并随着Mg2+的浓度增大,出现杂相,在365nm激发下发射峰位置由503nm迁移至423nm。Sr2+掺杂量在x=0.050.15时,合成的荧光粉物相为γ-Ca2SiO4,激发和发射光谱与未掺Sr2+时基本一致;当x=0.2时,物相转变为α’H-Ca2SiO4荧光粉,在365nm激发下特征峰位于465nm。Ba2+掺杂量在x=0.050.10时,荧光粉物相未有明显变化,但x=0.150.20时,合成的荧光粉物相转变为α-Ca2SiO4,在365nm激发下特征峰位于460nm。不同离子掺杂获得的荧光粉物相及发光性质变化的原因实际是,由于参与反应的碱土氧化熔点逐渐降低,Mg2+、Sr2+和Ba2+进入Ca2SiO4晶格引起相变的趋势在增强。
【Abstract】 A series of MxCa2-xSiO4:0.5mol%Ce3+,4.0 mol%Al3+( M=Mg,Sr,Ba; x= 0.05,0.1,0.15,0.2) phosphors was prepared by high temperature solid-state reaction. The structure,morphology and luminescent properties of the phosphors were studied by X-ray diffractometer,scanning electron microscope and fluorescence spectrometer. The results show that the structure of γ-Ca2SiO4phase maintains when x = 0.05 for MgxCa2-xSiO4: Ce3+,Al3+phosphor. Under the excitation of 450 nm light,a broad band emission centered at 565 nm is observed,which mainly corresponds to the 5d→2F7/2 and 5d→2F5/2 transitions of Ce3+. When x grows up to 0.1 0.2,the phase is changed to β-Ca2SiO4 with impurity phase. With the increase of the doping concentration,the emission peak of MgxCa2-xSiO4:Ce3+,Al3+ shifts from 503 nm to 423 nm under the excitation of 365 nm. When x = 0.05 0.15 for SrxCa2-xSiO4: Ce3+,Al3+phosphor,the structure and luminescent properties are almost same as those of the Sr-free phosphor. When x = 0.2,the phase is changed to α’H. Under the excitation of 365 nm,the emission peak locates at 465 nm. When x = 0.05 0.10 for BaxCa2-xSiO4: Ce3+,Al3+phosphor,the structure and optical properties are almost unchanged,however,the phase transforms to α-Ca2SiO4 when x = 0.15 0.2. The emission peak locates at 460 nm under the excitation of 365 nm. The reason for phase transformation and the change of luminescence properties of these phosphors are owing to the difference of melting points of alkali-earth metal oxides. The trend of phase transformation from γ- Ca2SiO4 to other phases is enhanced with the doping from Mg2+ to Sr2+ and Ba2+.
【Key words】 Ca2SiO4; alkaline-earth metal; phosphor; luminescence property;
- 【文献出处】 材料保护 ,Materials Protection , 编辑部邮箱 ,2016年S1期
- 【分类号】O482.31
- 【被引频次】1
- 【下载频次】76