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Enhanced afterglow performance of Zn2SiO4:Mn2+ by Pr3+ doping and mechanism

机译:Pr3+掺杂增强Zn2SiO4:Mn2+的余辉性能及机理

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? 2022High luminescence intensity and long persistent duration is desired for practical application of long persistent materials. But it still remains challenging due to insufficient phosphors to meet the commercial request and a general lack of understanding of luminescence mechanism. In this work, green persistent luminescent phosphor Zn2SiO4:Mn2+,Pr3+ was first synthesized by traditional solid-state reaction method with self-made SiO2 submicrospheres as silicon source. The morphology, crystal structure, photoluminescence and the long afterglow performance have been investigated systematically. Interestingly, the longest persistent luminescence is observed for 0.025 Mn2+, 0.001 Pr3+ co-doped Zn2SiO4 with a persistent time of ~2640 s at (0.32 mcd/m2), which is 20 times longer than those of Zn2SiO4 host or single Mn2+ doped Zn2SiO4 phosphors. The possible persistent mechanism has been discussed. The finding will be beneficial for developing persistent phosphors with superior functionalities.
机译:?2022长持久性材料的实际应用需要高发光强度和长持久性。但是,由于荧光粉不足以满足商业需求,并且普遍缺乏对发光机制的了解,它仍然具有挑战性。本工作首先以自制的SiO2亚微球为硅源,采用传统的固相反应法合成了绿色持久发光荧光粉Zn2SiO4:Mn2+,Pr3+。系统地研究了其形貌、晶体结构、光致发光和长余辉性能。有趣的是,在(0.32 mcd/m2)下,0.025 Mn2+、0.001 Pr3+共掺杂Zn2SiO4的持续时间最长,持续时间为~2640 s,是Zn2SiO4主体或单个Mn2+掺杂Zn2SiO4荧光粉的20倍。已经讨论了可能的持久性机制。这一发现将有利于开发具有卓越功能的持久性荧光粉。

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