加密
墨水池
计算机科学
堆积
光子学
解码方法
编码(社会科学)
信息存储
信息泄露
材料科学
纳米技术
光电子学
计算机网络
电信
化学
统计
有机化学
数据库
数学
语音识别
作者
Dong Li,Jiamin Wu,Zheng‐Hong Liang,Lin‐Yue Li,Xiu Dong,Si‐Kai Chen,Teng Fu,Xiuli Wang,Yuzhong Wang,Fei Song
标识
DOI:10.1002/advs.202206290
摘要
Exploring high-safety but convenient encryption and decryption technologies to combat threats of information leakage is urgently needed but remains a great challenge. Here, a synergistically time- and temperature-resolved information coding/decoding solution based on functional photonic inks is demonstrated. Encrypted messages can be stored into multiple channels with dynamic-color patterns, and information decryption is only enabled at appointed temperature and time points. Notably, the ink can be easily processed into quick-response codes and multipixel plates. With high transparency and responsive color variations controlled by ink compositions and ambient temperatures, advanced 3D stacking multichannel coding and Morse coding techniques can be applied for multi-information storage, complex anticounterfeiting, and information interference. This study paves an avenue for the design and development of dynamic photonic inks and complex encryption technologies for high-end anticounterfeiting applications.
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