Zdeb Patrycja, Rebrova Nadiia, Dereń Przemysław J
Institute of Low Temperature and Structure Research, Polish Academy of Science, ul. Okólna 2, 50-422 Wrocław, Poland.
J Phys Chem Lett. 2024 Sep 19;15(37):9356-9360. doi: 10.1021/acs.jpclett.4c02053. Epub 2024 Sep 6.
The recent pandemic has intensified the search for new ultraviolet C (UVC) phosphors excited by low-intensity visible light that can be used for disinfection or therapeutic purposes. Currently, the most promising phosphor with efficient upconversion was thus far YSiO (YSO) doped with Pr. However, we have studied a new material Sr(BO):Pr (SBO), whose upconversion emission is 10 times stronger than YSO, despite the high phonon energy possessed by SBO and despite the lack of optimization of synthesis and dopant concentration and the absence of co-dopant that should be added to compensate for the charge. Such an efficient upconversion is achieved by engagement of the D level, which is populated by both the multiphonon non-radiative transition and the closed feedback loop. From this level, blue excitation can reach the 4f5d electronic configuration. At the same time, due to a small Stokes shift, the 5d levels emit exclusively in the UVC and partially in the ultraviolet B (UVB) region.
最近的疫情加剧了对新型紫外线C(UVC)磷光体的探索,这种磷光体可被低强度可见光激发,用于消毒或治疗目的。目前,迄今为止最有前景的具有高效上转换的磷光体是掺Pr的YSiO(YSO)。然而,我们研究了一种新材料Sr(BO):Pr(SBO),尽管SBO具有较高的声子能量,尽管合成和掺杂浓度缺乏优化且没有添加用于补偿电荷的共掺杂剂,但其上转换发射比YSO强10倍。这种高效的上转换是通过D能级的参与实现的,该能级由多声子非辐射跃迁和闭合反馈回路填充。从这个能级,蓝色激发可以达到4f5d电子构型。同时,由于斯托克斯位移小,5d能级仅在UVC区域发射,部分在紫外线B(UVB)区域发射。