Liu Yukun, Meng Zhipeng, Miao Senlin, Huang Haofei, Ren Jie, Han Yaqun, Wu Suli
Research Institute of Clean Chemical Technology, School of Chemistry and Chemical Engineering, Shandong University of Technology, Zibo 255049, PR China.
Research Institute of Clean Chemical Technology, School of Chemistry and Chemical Engineering, Shandong University of Technology, Zibo 255049, PR China.
J Colloid Interface Sci. 2025 Jan;677(Pt A):99-107. doi: 10.1016/j.jcis.2024.07.199. Epub 2024 Jul 26.
Stimulus-responsive inverse opal photonic crystals (IOPCs) with tunable structural colors show significant promise in information security. To improve upon the traditional bilayer structure with limited color information and single decoding mode, this work developed an ethanol-responsive structure with multi-level information encryption ability by inserting a functional layer into two shielding layers (red Layer A with a photonic stop band (PSB) at 640 nm and green Layer C with a PSB at 530 nm). The functional layer was composed of colorless Layer B, a quick response (QR) code pattern made of TiO nanoparticles, and a dense polymer. Due to the isolation of distinct layers, different reflectance values, and different PSB positions of the three-layer IOPC, the structural color of Layer B could only be "turned on" by wetting the entire structure when its PSB redshifted from 360 nm to 460 nm. Specifically, when either side was individually wetted, the PSB of Layer A or C redshifted to 825 nm or 685 nm, and the color of the QR code was dominated by the unwetted red or green layer. After the entire structure had been soaked, the blue QR code was decoded. Meanwhile, when the detecting angle increased from 5° to 60°, the PSBs of Layers B and C in the wetted three-layer IOPC blueshifted from 460 nm to 365 nm and from 685 nm to 540 nm, respectively, which resulted in a cascade decoding process with a single- or mixed-color output. This structure provides a good foundation for multi-level information encryption.
具有可调结构颜色的刺激响应型反蛋白石光子晶体(IOPCs)在信息安全领域展现出巨大潜力。为了改进传统双层结构颜色信息有限且解码模式单一的问题,本研究通过在两个屏蔽层(红色A层,其光子禁带(PSB)位于640nm;绿色C层,其PSB位于530nm)之间插入功能层,开发了一种具有多级信息加密能力的乙醇响应结构。功能层由无色B层、由TiO纳米颗粒制成的二维码图案以及致密聚合物组成。由于三层IOPC各层相互隔离、反射率值不同且PSB位置不同,B层的结构颜色只有在其PSB从360nm红移至460nm且整个结构被润湿时才能“开启”。具体而言,当任一侧单独被润湿时,A层或C层的PSB红移至825nm或685nm,二维码颜色由未被润湿的红色或绿色层主导。整个结构浸泡后,蓝色二维码被解码。同时,当检测角度从5°增加到60°时,被润湿的三层IOPC中B层和C层的PSB分别从460nm蓝移至365nm以及从685nm蓝移至540nm,从而产生单颜色或混合颜色输出的级联解码过程。这种结构为多级信息加密提供了良好基础。