材料科学
相容性(地球化学)
纳米技术
计算机科学
信息集成
信息存储
聚合物
加密
信息共享
分布式计算
序列(生物学)
信息处理
封装(网络)
相互信息
干扰(通信)
功能性聚合物
维数(图论)
信息模型
信息安全
作者
Hairui Deng,Siqi Liu,Fengbiao Chen,Yifan Ge,Yangju Lin,Yinjun Chen,Meifang Zhu
标识
DOI:10.1021/acsami.5c16385
摘要
Stimuli-responsive polymers have been widely used to diversify anticounterfeiting technologies. However, creating multilevel anticounterfeiting strategies using these polymers remains challenging due to the compatibility and mutual interference between different responsive signals, resulting in a low information resolution. Herein, we propose a strategy to enhance anticounterfeiting capacity by dimensionally integrating dynamic information and leveraging the orthogonal, non-interfering multistimuli responses of functional molecules. Specifically, distinct stimuli-responsive polymers were integrated into a module matrix, enabling multilevel information storage. At the molecular scale, diverse functional molecules are incorporated into polymer backbones to augment multicolored changes under different external stimuli. From the orthogonal combination of several types of stimuli-responsive polymers, this strategy enables the preparation of anticounterfeiting labels and QR codes with multilevel encryption and decryption capability. Altering the type and sequence of external stimuli allows these labels and QR codes to display dynamic information via a combined color change, thereby expanding the information storage capacity and enhancing anticounterfeiting levels. This multidimensional integration strategy of distinct stimuli-responsive polymers opens opportunities for high-security anticounterfeiting applications.
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