发光
多模光纤
镧系元素
材料科学
压电
铌酸锂
光学传感
光电子学
光纤
光学
离子
化学
物理
复合材料
有机化学
作者
Nan Lin,Jiawen Wang,Zhen Xiao,R.J. Tan,Yang Zhang,Shiqing Xu,Gongxun Bai
标识
DOI:10.1002/lpor.202301352
摘要
Abstract Multimode luminescence is usually stimulated by various external stimuli in response to photon emission and is applied in various anti‐counterfeiting and encryption fields. However, integrating multimode luminescence into a single stable material, and how to quantitatively evaluate the relationship between temperature light and force light remains a challenge. In this work, LiNbO 3 :Er 3+ /Pr 3+ microcrystals that can respond to X‐ray, UV light, temperature, and stress stimuli are developed. The temperature‐dependent upconversion emission spectra show a maximum relative sensitivity of 0.889% K −1 based on the intensity ratio. Meanwhile, the mechanoluminescence around 618 nm with a linear relationship is observed with the increase of force. These materials illustrate strong static and dynamic luminescence that can be manipulated in space and time dimensions, which provides new ideas in the field of anti‐counterfeiting and information encryption.
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