Department of Chemistry KU Leuven, Celestijnenlaan 200D, Heverlee, B-3001, Leuven, Belgium.
IMEC, Kapeldreef 75, Heverlee, B-3001, Leuven, Belgium.
Adv Mater. 2018 Jun;30(25):e1707246. doi: 10.1002/adma.201707246. Epub 2018 May 4.
The colors of photonic crystals are based on their periodic crystalline structure. They show clear advantages over conventional chromophores for many applications, mainly due to their anti-photobleaching and responsiveness to stimuli. More specifically, combining colloidal photonic crystals and invisible patterns is important in steganography and watermarking for anticounterfeiting applications. Here a convenient way to imprint robust invisible patterns in colloidal crystals of hollow silica spheres is presented. While these patterns remain invisible under static environmental humidity, even up to near 100% relative humidity, they are unveiled immediately (≈100 ms) and fully reversibly by dynamic humid flow, e.g., human breath. They reveal themselves due to the extreme wettability of the patterned (etched) regions, as confirmed by contact angle measurements. The liquid surface tension threshold to induce wetting (revealing the imprinted invisible images) is evaluated by thermodynamic predictions and subsequently verified by exposure to various vapors with different surface tension. The color of the patterned regions is furthermore independently tuned by vapors with different refractive indices. Such a system can play a key role in applications such as anticounterfeiting, identification, and vapor sensing.
光子晶体的颜色基于其周期性的晶体结构。与传统的发色团相比,它们在许多应用中具有明显的优势,主要是由于它们具有抗光漂白性和对刺激的响应性。更具体地说,将胶体光子晶体与不可见图案相结合,对于用于防伪应用的隐写术和水印技术非常重要。这里提出了一种在空心二氧化硅球胶体晶体中压印稳健的不可见图案的简便方法。虽然这些图案在静态环境湿度下仍然不可见,即使相对湿度接近 100%,但它们可以立即(≈100ms)通过动态湿度流(例如,人类呼吸)完全可逆地显示出来。这是由于图案(蚀刻)区域的极端润湿性所致,通过接触角测量得到了证实。通过热力学预测评估了诱导润湿(显示压印的不可见图像)的液体表面张力阈值,随后通过暴露于具有不同表面张力的各种蒸气来验证。图案区域的颜色还可以通过具有不同折射率的蒸气来独立调节。这样的系统可以在防伪、识别和蒸气感测等应用中发挥关键作用。