SrWO_4∶Gd^(3+),Tb^(3+)荧光粉的发光性质及能量传递  

Luminescence Properties and Energy Transfer of SrWO_4∶Gd^(3+),Tb^(3+)

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作  者:霍涌前[1] 杨庆萍[1] 孙涛[1] 李甜甜[1] 石蕾[1] 张瑾[1] 陈晓利[1] 刘晓利[1] 

机构地区:[1]延安大学化学与化工学院,陕西延安716000

出  处:《合成材料老化与应用》2015年第6期69-74,104,共7页Synthetic Materials Aging and Application

基  金:国家自然科学基金(21101133)资助

摘  要:合成了SrWO_4∶Gd^(3+),Tb^(3+)两个系列荧光发光粉,其XRD衍射测试结果表明,合成材料结构均为体心四方晶系。颗粒的形貌为类球形,分散性很好,平均晶粒尺寸在3μm左右。荧光光谱检测表明,在223nm激发下,Sr_(0.9)WO_4∶0.05 Gd^(3+),0.05Tb^(3+)荧光粉最强发射峰位于549nm处,属于Tb^(3+)的~5D_4→~7F_5的跃迁,在该体系中存在Gd^(3+)→Tb^(3+)的能量传递,使得该荧光粉的发光强度随着Gd^(3+)掺杂浓度的增加而增大。One serie SrWO4∶ Gd^(3+),Tb^(3+)fluorescent powder were synthesized in this paper. The structure,morphology and luminescence properties of the samples were characterized by XRD,SEM and luminescence spectroscopy. XRD analysis confirmed the samples exhibited a body-centered tetragonal crystal structure. The particles of as-synthesized phosphors are basically spherical in shape,and well dispersed with the mean particle size of 3μm. In the emission spectrum of Sr(0. 9)WO4∶ 0. 05Gd^(3+),0. 05Tb^(3+)excited by 223 nm,the main peak is located at about549 nm due to the transition of ~5D4→~7F5 of Tb^(3+)emission. The PL intensity of Tb^(3+)in Sr(0. 9)WO4∶ 0. 05Gd^(3+),0. 05Tb^(3+)increases with the increase of x values due to an energy migration process like Gd^(3+)→Tb^(3+)occurred in the phosphors.

关 键 词:钨酸锶 发光性能 铽掺杂 荧光粉 稀土 

分 类 号:O482.31[理学—固体物理]

 

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