Li Lin, Cheng Bin, Chen Shuoran, Ding Yilei, Zhao Xin, Wan Shigang, Shi Yizhong, Ye Changqing
School of Materials Science and Engineering, Suzhou University of Science and Technology, Suzhou 215009, PR China.
School of Materials Science and Engineering, Suzhou University of Science and Technology, Suzhou 215009, PR China.
J Colloid Interface Sci. 2024 Oct 15;672:152-160. doi: 10.1016/j.jcis.2024.05.228. Epub 2024 May 31.
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.
在保证广泛的普通和奢侈品真实性的情况下,具有高编码容量的光学信息加密可以显著提高防伪的安全级别。在这项工作中,通过微囊化胆甾相液晶和三重态-三重态湮灭上转换荧光团,将结构着色与荧光和上转换光致发光相结合,制备了一种具有高度复杂性的新型防伪材料。此外,这种多模安全墨水通过各种印刷技术在柔性基板上呈现出可定制的光学行为和可编程能力,在不同光学模式下提供独特的信息加密。该先进策略为具有大大增强的编码容量、可编程性、可印刷性和成本效益的高安全级多模光学墨水提供了一个实用的通用平台,这表明其在信息加密和防伪技术方面具有巨大潜力。