Bai Ziyi, Guo Lei, Zhao Di, Wang Yige
School of Chemical Engineering and Technology, Hebei University of Technology, GuangRong Dao 8, Hongqiao District, Tianjin 300130, P. R. China.
ACS Appl Mater Interfaces. 2024 Aug 21;16(33):44018-44025. doi: 10.1021/acsami.4c08938. Epub 2024 Aug 9.
Photoluminescent materials are widely used for information storage and anticounterfeiting, while most of them have the disadvantages of static information performance and weak processability, which is still a challenging task in developing dynamic anticounterfeiting materials with high security levels. Herein, we fabricated a novel photostimuli-responsive dual-emitting luminescent material , which was obtained by introducing the photochromic molecule spiropyran (SP) and lanthanide complex (Tb-hfa) into a siloxane-polyether matrix using the sol-gel process. Due to the conformation-dependent photochromic fluorescence resonance energy transfer between the Tb-hfa donor and SP acceptor, the ring-closing (SP)/ring-opening (MC) isomerization of the SP unit leads to a reversible luminescence switching in . This composite material has great potential for advanced anticounterfeiting because of the advantage of rapidly repeatable encryption/decryption for at least 8 times and dynamic luminescent colors within 15 s. In addition, due to its two luminescent centers (Tb and MC), the luminescent color of this material can be regulated by 254 and 365 nm UV-light irradiation, which facilitates the design of multicolored anticounterfeiting labels. Our work presents a novel design methodology to fabricate dynamic anticounterfeiting materials, significantly enhancing the security of anticounterfeiting applications.
光致发光材料广泛应用于信息存储和防伪领域,然而大多数光致发光材料存在静态信息性能差和可加工性弱的缺点,因此开发具有高安全级别的动态防伪材料仍然是一项具有挑战性的任务。在此,我们制备了一种新型的光刺激响应双发射发光材料,该材料是通过溶胶-凝胶法将光致变色分子螺吡喃(SP)和镧系配合物(Tb-hfa)引入硅氧烷-聚醚基质中获得的。由于Tb-hfa供体和SP受体之间存在构象依赖性光致变色荧光共振能量转移,SP单元的闭环(SP)/开环(MC)异构化导致材料中出现可逆的发光切换。这种复合材料具有很大的潜力用于高级防伪,因为它具有至少8次快速可重复加密/解密的优势,并且在15秒内可实现动态发光颜色变化。此外,由于该材料具有两个发光中心(Tb和MC),其发光颜色可通过254和365nm紫外光照射进行调节,这有利于设计多色防伪标签。我们的工作提出了一种制备动态防伪材料的新颖设计方法,显著提高了防伪应用的安全性。