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多模式防伪保证来自单一材料 CaCdGaGeO:Tb,Yb- 两种刺激响应和四态发射。

Multi-mode anti-counterfeiting guarantees from a single material CaCdGaGeO:Tb,Yb - two stimuli-responsive and four-state emission.

机构信息

School of Chemistry and Chemical Engineering, Qinghai Normal University, Xining 810008, China.

Academy of Plateau Science and Sustainability, People's Government Of Qinghai Province & Beijing Normal University, Xining, 810016, China.

出版信息

Dalton Trans. 2023 Feb 14;52(7):2145-2156. doi: 10.1039/d2dt03941a.

Abstract

Luminescent anti-counterfeiting materials have drawn much attention in anti-counterfeiting applications due to their photochemical stability and emission patterns. However, conventional materials majorly use single-mode luminescence, leaving a growing demand for new materials to prevent counterfeiting. In this work, multi-mode anti-counterfeiting is guaranteed from a single luminescent material CaCdGaGeO:Tb,Yb a high-temperature solid-state reaction. The experimental result showed that this single material features green luminescence with excellent photoluminescence, afterglow, thermoluminescence, and up-conversion luminescence, which are ascribed to Tb transitions. Upon co-doping with Yb as a sensitiser, the photo-stimuli responsiveness was achieved at 254 and 980 nm excitation sources, respectively, and the thermo-stimuli responsiveness was realised after exposure to UV of 254 nm for 10 s and heating at 45 °C, respectively. The band structure calculation, trap distribution, and effective trap depths were used to explain the luminescence mechanism. Based on the two-stimuli responsiveness and four-state emission performance, we prepared images of optical devices using silk screen printing technology. It was found that the images displayed green emission under different luminescence modes. The results prove that we successfully constructed an advanced luminescence anti-counterfeiting material.

摘要

发光防伪材料由于其光化学稳定性和发光模式而在防伪应用中引起了广泛关注。然而,传统材料主要使用单模发光,因此对防止伪造的新材料的需求不断增长。在这项工作中,通过高温固态反应从单一发光材料 CaCdGaGeO:Tb,Yb 保证了多模防伪。实验结果表明,这种单一材料具有优异的光致发光、余辉、热致发光和上转换发光的绿色发光,这归因于 Tb 跃迁。共掺杂 Yb 作为敏化剂后,分别在 254nm 和 980nm 激发源下实现了光刺激响应,分别在暴露于 254nm 的 UV 光 10s 后和在 45°C 加热后实现了热刺激响应。能带结构计算、陷阱分布和有效陷阱深度用于解释发光机制。基于双刺激响应和四态发射性能,我们使用丝网印刷技术制备了光学器件的图像。结果表明,在不同的发光模式下,图像显示出绿色发射。结果证明我们成功构建了一种先进的发光防伪材料。

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