加密
光子上转换
光致发光
多模光纤
材料科学
编码(内存)
计算机科学
范围(计算机科学)
纳米技术
墨水池
光电子学
光纤
计算机安全
电信
发光
人工智能
复合材料
程序设计语言
作者
Lin Li,Bin Cheng,Shuoran Chen,Yilei Ding,Xin Zhao,Shigang Wan,Yi‐Zhong Shi,Changqing Ye
标识
DOI:10.1016/j.jcis.2024.05.228
摘要
Optical information encryption with high encoding capacities can significantly boost the security level of anti-counterfeiting in the scenario of guaranteeing the authenticity of a wide scope of common and luxury goods. In this work, a novel counterfeiting material with high-degree complexity is fabricated by microencapsulating cholesteric liquid crystals and triplet–triplet annihilation upconversion fluorophores to integrate structural coloration with fluorescence and upconversion photoluminescence. Moreover, the multimode security ink presents tailorable optical behaviors and programmable abilities on flexible substrates by various printing techniques, which offers distinct information encryption under different optical modes. The advanced strategy provides a practical versatile platform for high-secure-level multimode optical inks with largely enhanced encoding capacities, programmability, printability, and cost-effectiveness, which manifests enormous potentials for information encryption and anti-counterfeiting technology.
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