Guo Haihong, Wang Ting, Zhu Xuanyu, Liu Haoze, Nie Lin, Guo Longchao, Gu Tingxiang, Xu Xuhui, Yu Xue
College of Materials and Chemistry & Chemical Engineering, Chengdu University of Technology, Chengdu 610059, China; State Key Laboratory of Electronic Thin Films and Integrated Devices, School of Optoelectronic Science and Engineering, University of Electronic Science and Technology of China (UESTC), Chengdu 610054, China.
College of Materials and Chemistry & Chemical Engineering, Chengdu University of Technology, Chengdu 610059, China.
J Colloid Interface Sci. 2023 Jun 15;640:719-726. doi: 10.1016/j.jcis.2023.02.158. Epub 2023 Mar 4.
Complex and high-security-level anti-counterfeiting strategies with multiple luminescent modes are extremely critical for meeting the requirement of constantly developing information storage and information security. In this work, Tb ions doped SrYGeO (SYGO) and Tb/Er co-doped SYGO phosphors are successfully fabricated and are unitized for anti-counterfeiting and information encoding under distinct stimuli sources. The green photoluminescence (PL), long persistent luminescence (LPL), mechano-luminescence (ML), and photo-stimulated luminescence (PSL) behaviors are respectively observed under the stimuli of ultraviolet (UV), thermal disturbance, stress, and 980 nm diode laser. Based on the time-dependence of the filling and releasing rate of the carriers from the shallow traps, the dynamic information encryption strategy is proposed by simply changing the UV pre-irradiation time or shut-off time. Moreover, a tunable color from green to red is realized by prolonging the 980 nm laser irradiation time, which is attributed to the elaborate cooperation of the PSL and upconversion (UC) behaviors. The anti-counterfeiting method based on SYGO: Tb and SYGO: Tb, Er phosphors herein possess an extremely high-security level with attractive performance for designing advanced anti-counterfeiting technology.
具有多种发光模式的复杂且高安全级别的防伪策略对于满足不断发展的信息存储和信息安全需求至关重要。在这项工作中,成功制备了掺杂Tb离子的SrYGeO(SYGO)和Tb/Er共掺杂的SYGO荧光粉,并将其用于在不同刺激源下的防伪和信息编码。分别在紫外光(UV)、热干扰、应力和980 nm二极管激光的刺激下观察到绿色光致发光(PL)、长余辉发光(LPL)、机械发光(ML)和光激发发光(PSL)行为。基于载流子从浅陷阱填充和释放速率的时间依赖性,通过简单改变UV预辐照时间或关闭时间提出了动态信息加密策略。此外,通过延长980 nm激光辐照时间实现了从绿色到红色的可调颜色,这归因于PSL和上转换(UC)行为的精心配合。本文基于SYGO:Tb和SYGO:Tb,Er荧光粉的防伪方法具有极高的安全级别,在设计先进防伪技术方面具有诱人的性能。