余辉
持续发光
发光
材料科学
兴奋剂
X射线光电子能谱
激发
光化学
纳米技术
光电子学
分析化学(期刊)
化学工程
热释光
化学
环境化学
物理
伽马射线暴
量子力学
天文
工程类
作者
Junlong Cao,Songsong Ding,Yunpeng Zhou,Sheng Wang
标识
DOI:10.1002/adom.202302011
摘要
Abstract Numerous challenges persist in the field of long persistent luminescence (LPL) materials, including the unclear mechanism of persistent luminescence, low efficiency of sunlight excitation, and limited availability of commercial materials. To address these issues, a LPL material, SrAl 2 Si 2 O 8 :x% Eu 2+ ,y% Dy 3+ , is synthesized for excitation by UV lamps or sunlight. Dy 3+ doping remarkably extends the afterglow duration from 2 to 7 h under UV lamp excitation, exhibiting a remarkable enhancement of 350%. Notably, SrAl 2 Si 2 O 8 :4.0% Eu 2+ , 3.0% Dy 3+ shows 2 h afterglow duration when exposed to sunlight, surpassing other LPL materials and expanding potential applications. XPS and XANES measurements confirm Eu 2+ as the luminescent and persistent luminescent centers, while Dy 3+ increases trap diversity. Through meticulous analysis of the EPR and XPS data, it is elucidated that the material encompasses two distinct types of traps, namely oxygen vacancies and may be traps. This provides a basis for subsequent trap analysis in LPL materials. Microstructural analysis examined ion coordination environment changes due to Eu 2+ and Dy 3+ doping. The mechanical luminescent properties are characterized, and a plausible afterglow mechanism is proposed based on the experimental results, offering insights for further research into LPL materials.
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