发光
材料科学
光致变色
加密
光致发光
光电子学
激发
可扩展性
复杂度
兴奋剂
持续发光
纳米技术
光通信
光学材料
光学工程
产品(数学)
认证(法律)
热释光
灰度
多模光纤
密文
智能材料
光学
作者
Xin Kang,Yang Lv,Jihua Xu,Xiaoxin Wang,Guofeng Liu,Zhen Li,Chao Zhang,Chonghui Li,Shicai Xu,Xiaohui Lin
摘要
ABSTRACT The increasing sophistication of counterfeiting has created an urgent demand for advanced optical materials with dynamic, multidimensional, and difficult‐to‐replicate responses for high‐security information protection. Although multi‐stimuli‐responsive luminescent materials have attracted considerable attention, many still suffer from single excitation modes or limited reversibility, restricting their practical use in advanced anti‐counterfeiting. Herein, we report a Eu 3+ ‐doped Sr 2 YTaO 6 material that integrates reversible photochromism (PC), photoluminescence (PL), and persistent luminescence (PersL) within a single material. Under both UV light and X‐ray irradiation, the material exhibits pronounced reversible PC, and the coloration degree can be precisely regulated by the Eu 3+ doping concentration, enabling grayscale optical encryption. In addition, the material shows characteristic red emission under multiple excitation modes together with red PersL. Thermoluminescence (TL) demonstrates that the PC and PersL behaviors originate from a synergistic trap system consisting of shallow, medium, and deep traps, which govern carrier trapping, storage, and release. Benefiting from these properties, a practical screen‐printing strategy was developed to fabricate complex stimulus‐responsive encrypted patterns, and a concentration‐gradient‐based encoding/decoding system was constructed. The Sr 2 YTaO 6 :Eu 3+ material provides a versatile platform for integrating reversible photochromic performance, tunable luminescence, and PersL, and offers a scalable route toward high‐security optical encryption for product authentication and document protection.
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