College of Science, Xi'an University of Architecture and Technology, Xi'an, Shaanxi, China.
College of Science, Chang'an University, Xi'an, Shaanxi, China.
Luminescence. 2024 Nov;39(11):1-8. doi: 10.1002/bio.70027.
Double wavelength emitting phosphors with hypersensitive thermal response are important for optical/thermal sensors and multiplexing optical data storage technology. However, it is a daunting challenge to develop multicolor electron-trapping materials with superheat sensitivity and anomalous quenching luminescence characteristics for information storage. Here, based on the selection of host lattice and the control of doping ion types, we have designed Mn- and/or Cr-activated persistent materials with excellent fluorescence properties. Among these phosphors, Mn,Cr co-activated biphasic mixture exhibits not only sensitive anomalous thermosensitive fluorescence properties but also multicolor and multimode fluorescence emission characteristics derived from Mn and Cr simultaneously. The corresponding multimode fluorescence mechanism is proposed based on afterglow energy transfer and deepening trap effect. Especially, based on the excellent fluorescence performances, these phosphors as information storage medium demonstrate multilevel information storage by a combination of the trap multiplexing and wavelength multiplexing technologies. The study here provides not only the ideas for designing and synthesizing new electronic materials but also a material foundation for the fourth generation of optical information storage and encryption.
双波长发射磷光体具有超灵敏的热响应,对于光学/热传感器和复用光学数据存储技术非常重要。然而,开发具有超热灵敏度和异常猝灭发光特性的多色电子陷阱材料用于信息存储是一项艰巨的挑战。在这里,我们基于宿主晶格的选择和掺杂离子类型的控制,设计了具有优异荧光性能的 Mn 和/或 Cr 激活的持续发光材料。在这些荧光粉中,Mn、Cr 共激活的双相混合物不仅表现出灵敏的异常热敏荧光特性,而且还表现出同时来自 Mn 和 Cr 的多色和多模荧光发射特性。基于余辉能量转移和加深陷阱效应,提出了相应的多模荧光机制。特别是,基于优异的荧光性能,这些荧光粉作为信息存储介质通过陷阱复用和波长复用技术的组合实现了多级信息存储。本研究不仅为设计和合成新型电子材料提供了思路,也为第四代光学信息存储和加密提供了材料基础。