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用于高级信息加密的铒单激活CaF磷光体的多模式响应发光

Multimode-Responsive Luminescence of Er Single-Activated CaF Phosphor for Advanced Information Encryption.

作者信息

Liu Haozhe, Zhu Xuanyu, Nie Lin, Guo Longchao, Jiang Chaoxin, Wang Guohao, Huang Wenlong, Hou Lihui, Hu Tingting, Yakovlev Alexey Nikolaevich, Xu Xuhui, Yu Xue, Wang Ting

机构信息

College of Materials and Chemistry & Chemical Engineering, Chengdu University of Technology, Chengdu 610059, China.

School of Mechanical Engineering, Institute for Advanced Materials, Chengdu University, Chengdu 610106, China.

出版信息

Inorg Chem. 2023 Oct 9;62(40):16485-16492. doi: 10.1021/acs.inorgchem.3c02215. Epub 2023 Sep 22.

Abstract

The current optical anticounterfeit strategies that rely on multimode luminescence in response to the photon or thermal stimuli have significant importance in the field of anticounterfeiting and information encryption. However, the dependence on light and heat sources might limit their flexibility in practical applications. In this work, Er single-doped CaF phosphors that show multistimuli-responsive luminescence have been successfully prepared. The as-obtained CaF:Er phosphor exhibits green photoluminescence (PL) and color-tunable up-conversation (UC) luminescence from red to green due to the cross-relaxation of Er ions. Additionally, as-obtained CaF:Er phosphors also display green mechano-luminescence behavior, which is induced by the contact electrification between the CaF particles and PDMS polymers, enabling the phosphor to flexibly respond to mechanical stimuli. Moreover, feasible anticounterfeiting schemes with the capability of multistimuli-responsive and flexible decryption have been constructed, further expanding the application of optical materials in the field of advanced anticounterfeiting and information encryption.

摘要

当前依赖多模发光以响应光子或热刺激的光学防伪策略在防伪和信息加密领域具有重要意义。然而,对光源和热源的依赖可能会限制它们在实际应用中的灵活性。在这项工作中,成功制备了显示多刺激响应发光的单掺铒氟化钙荧光粉。所制备的氟化钙:铒荧光粉由于铒离子的交叉弛豫而呈现绿色光致发光(PL)以及从红色到绿色的颜色可调上转换(UC)发光。此外,所制备的氟化钙:铒荧光粉还表现出绿色机械发光行为,这是由氟化钙颗粒与聚二甲基硅氧烷聚合物之间的接触起电所诱导的,使荧光粉能够灵活响应机械刺激。此外,构建了具有多刺激响应和灵活解密能力的可行防伪方案,进一步拓展了光学材料在先进防伪和信息加密领域的应用。

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