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用于动态防伪应用的非化学计量比诱导自激活荧光粉

Nonstoichiometry-Induced Self-Activated Phosphors for Dynamic Anti-counterfeiting Applications.

作者信息

Yue Yang, Wang Ting, Yan Yajing, Guo Longchao, Zhu Xuanyu, Bu Weifang, Wang Guohao, Zhu Nannan, Zhao Lei, Yu Xue

机构信息

School of Mechanical Engineering, Institute for Advanced Study, Chengdu University, Chengdu, Sichuan 610106, People's Republic of China.

College of Materials and Chemistry & Chemical Engineering, Chengdu University of Technology, Chengdu, Sichuan 610059, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2024 Jun 26;16(25):32402-32410. doi: 10.1021/acsami.4c04746. Epub 2024 Jun 14.

Abstract

Optical signals with distinctive properties, such as contactless, fast response, and high identification, are harnessed to realize advanced anti-counterfeiting. However, the simultaneous attainment of multi-color, -temporal, and -modal luminescence performance remains a compelling and imperative pursuit. In our work, a temperature/photon-responded dynamic self-activated luminescence originating from nonstoichiometric ZnGeO is developed with the modulation of intrinsic defects. The increased concentration of oxygen vacancies (V) contributes to an enhanced recombination of Zn-V, ultimately improving the self-activated luminescence performance. Additionally, the photoluminescence (PL) color of the representative ZnGeO sample changes from green to blue-white with the increased ultraviolet (UV) irradiation time. Concurrently, the emission color undergoes a variation from blue to green as the ambient temperature raises from 280 to 420 K. Remarkably, green long persistent luminescence (LPL) and photostimulated luminescence (PSL) behaviors are observed. Herein, this study elucidates a sophisticated anti-counterfeiting approach grounded in the dynamic luminescent attributes of nonstoichiometric ZnGeO, presenting a promising frontier for the evolution of anti-counterfeiting technologies.

摘要

具有独特性质的光信号,如非接触、快速响应和高识别性,被用于实现先进的防伪技术。然而,同时实现多色、多时间和多模式发光性能仍然是一个迫切且必要的追求。在我们的工作中,通过本征缺陷的调制,开发了一种源自非化学计量比ZnGeO的温度/光子响应动态自激活发光。氧空位(V)浓度的增加有助于增强Zn-V的复合,最终提高自激活发光性能。此外,代表性ZnGeO样品的光致发光(PL)颜色随着紫外(UV)照射时间的增加从绿色变为蓝白色。同时,随着环境温度从280 K升高到420 K,发射颜色从蓝色变为绿色。值得注意的是,观察到了绿色长余辉发光(LPL)和光激发发光(PSL)行为。在此,本研究阐明了一种基于非化学计量比ZnGeO动态发光特性的复杂防伪方法,为防伪技术的发展呈现了一个有前景的前沿领域。

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