磷光
个性化
计算机科学
发光
加密
紫外线
材料科学
光电子学
认证(法律)
余辉
工作(物理)
纳米技术
荧光
产品(数学)
计算机安全
物理
紫外线
遥感
化学
光学
作者
Xiangxiang Zhai,Qianqian Yan,Guangming Wang,Jiuyang Li,Yufeng Xiao,Biaobing Wang,Kaka Zhang
标识
DOI:10.1021/acsmaterialslett.5c01313
摘要
The current high-end anticounterfeiting and information encryption technologies have predominantly relied on color-encoded or lifetime-encoded systems. We reason that the integration of multiple afterglow mechanisms, which are mechanism-encoded systems, could fundamentally enhance security levels. Nevertheless, the exploration of mechanism-encoded paradigms remains conspicuously absent in the literature. Here we develop four types of afterglow materials with distinct mechanisms, including room-temperature phosphorescence (RTP, T1 afterglow), thermally activated delayed fluorescence (TADF, S1 afterglow), anti-Kasha Tn afterglow (n ≥ 2), and organic long-persistent luminescence (OLPL), and pioneer a mechanism-encoded anticounterfeiting strategy through systematic material design. Various afterglow patterns, such as security labels, work badges, authentication certificates, and maps, were prepared through ultraviolet printing and melt casting, incorporating multiple afterglow mechanisms that make them highly resistant to counterfeiting. By employing industrial-grade equipment, we successfully achieved the large-scale production of these afterglow patterns, laying the foundation for applications in anticounterfeiting, information encryption, personalization, and aesthetic enhancement.
科研通智能强力驱动
Strongly Powered by AbleSci AI