加密
材料科学
纳米技术
光子学
超分子化学
计算机科学
光存储
信息安全
光子晶体
信号(编程语言)
量子点
信息存储
镧系元素
计算机数据存储
聚合物
胶体晶体
量子信息
光子上转换
编码(内存)
聚苯乙烯
密码学
数据安全
荧光
爆炸物
作者
X S Chen,Jiadong Hou,Miaomiao Li,Quanqian Lyu,Zhen Hu,Meiru Zhao,Lianbin Zhang,Zhu J
出处
期刊:ACS Nano
[American Chemical Society]
日期:2026-06-04
卷期号:20 (23): 17103-17115
标识
DOI:10.1021/acsnano.6c08481
摘要
The increasing demand for information security is driving the rapid development of information encryption and anticounterfeiting technologies. Advanced information encryption systems capable of displaying different hidden information via simple triggers (e.g., illumination conditions) are promising yet challenging. Herein, inspired by the unique coloration and fluorescent features of P. oribazus butterflies, we present photonic security labels integrating triple-independent optical signals (i.e., structural color and two excitation wavelength-dependent fluorescence) by shear-induced colloidal ordering in dynamic lanthanide fluorescent metallosupramolecular networks (Ln-FMP) toward high-security-level information encryption and anticounterfeiting. The Ln-FMP can be rapidly fabricated by shearing the supramolecular composites consisting of lanthanide-coordinated polyurethane matrix and carboxylated polystyrene colloidal particles. By designing and encoding the diverse optical signals of Ln-FMP, high-security information encryption and anticounterfeiting labels with robust data storage capacity can be engineered. Furthermore, the abundant reversible supramolecular interactions endow Ln-FMP with excellent closed-loop recyclability and reutilization potential. Therefore, our study provides a reliable platform for the sustainable development of advanced intelligent information encryption and anticounterfeiting systems.
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