Li Hai-Feng, Sun Wen-Zhi, Jia Yong-Lei, Ma Teng-Fei, Fu Ji-Peng, Li Da, Zhang Su, Jiang Li-Hong, Pang Ran, Li Cheng-Yu
State Key Laboratory of Rare Earth Resource Utilization, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, 130022, P. R. China.
University of Chinese Academy of Sciences, Beijing, 100049, P. R. China.
Chem Asian J. 2015 Nov;10(11):2361-7. doi: 10.1002/asia.201500580. Epub 2015 Aug 26.
A series of new long afterglow phosphors Ca2 SnO4:xTm(3+) were synthesized by using traditional solid-state reactions. XRD measurements and Rietveld refinement revealed that the incorporation of the Tm(3+) dopants generated no second phase other than the original one of Ca2 SnO4, which indicated that the dopants completely merged into the host. The corresponding optical properties were further systematically studied by photoluminescence, phosphorescence, and thermoluminescence (TL) spectroscopy. The results show that the Tm(3+)-related defects account for the bright bluish green afterglow emission from the characteristic f-f transitions of Tm(3+) ions. The bluish green long-lasting phosphorescence could be observed for 5 h by the naked eye in a dark environment after the end of UV irradiation. Two TL peaks at 325 and 349 K from the TL curves were adopted to calculate the depth of the traps, which were 0.45 and 0.78 eV, respectively. The mechanism of the long afterglow emission was also explored.
采用传统固相反应法合成了一系列新型长余辉荧光粉Ca2SnO4:xTm(3+)。X射线衍射(XRD)测量和Rietveld精修表明,掺入Tm(3+)掺杂剂后,除了原始的Ca2SnO4相外没有产生第二相,这表明掺杂剂完全融入了基质。通过光致发光、磷光和热释光(TL)光谱进一步系统地研究了相应的光学性质。结果表明,与Tm(3+)相关的缺陷导致了Tm(3+)离子特征f-f跃迁产生明亮的蓝绿色余辉发射。紫外光照射结束后,在黑暗环境中用肉眼可观察到蓝绿色长余辉磷光持续5小时。利用TL曲线中325和349 K处的两个TL峰计算陷阱深度,分别为0.45和0.78 eV。还探讨了长余辉发射的机理。