Shaanxi Key Laboratory of Green Preparation and Functionalization for Inorganic Materials, Shaanxi University of Science and Technology, School of Materials Science and Engineering, Xi'an, People's Republic of China.
Luminescence. 2024 Feb;39(2):e4695. doi: 10.1002/bio.4695.
The afterglow properties of long afterglow luminescent materials are greatly affected by their defects, which are distributed on the grain surface. Increasing the exposed surface area is an important method to improve the afterglow performance. In this research, long rod-shaped long afterglow materials Sr MgSi O :Eu ,Dy were prepared using the hydrothermal-coprecipitation method. When the reaction time reached 96 h, the length of the afterglow materials could grow to 2 mm, and the sintering temperature was just 1150°C. The emission spectra of all obtained samples upon excitation at 397 nm had a maximum of 465 nm, which belonged to the representative transition of Eu . The initial brightness was 1.35 cd/m . The afterglow time could reach 19 h, giving a good afterglow performance. The research on this kind of material has essential significance in the exploration of luminescence mechanisms and their applications.
长余辉发光材料的余辉性能受其表面缺陷影响较大,这些缺陷分布在晶粒表面。增加暴露表面积是提高余辉性能的重要方法。本研究采用水热共沉淀法制备了长棒状长余辉材料 SrMgSiO:Eu,Dy。当反应时间达到 96 h 时,余辉材料的长度可以长至 2 mm,烧结温度仅为 1150°C。所有在 397nm 激发下获得的样品的发射光谱在 465nm 处有最大值,这属于 Eu 的代表性跃迁。初始亮度为 1.35 cd/m。余辉时间可达 19 h,具有良好的余辉性能。对这种材料的研究对于探索发光机制及其应用具有重要意义。