Nam Hyunmoon, Song Kyungjun, Ha Dogyeong, Kim Taesung
Department of Mechanical Engineering, Ulsan National Institute of Science and Technology (UNIST), 50 UNIST-gil, Ulsan 44919, Republic of Korea.
Korea Institute of Machinery and Materials, 156, Gajeongbuk-Ro, Yuseong-Gu, Daejeon 34103, Republic of Korea.
Sci Rep. 2016 Aug 4;6:30885. doi: 10.1038/srep30885.
Photonic crystal structures can be created to manipulate electromagnetic waves so that many studies have focused on designing photonic band-gaps for various applications including sensors, LEDs, lasers, and optical fibers. Here, we show that mono-layered, self-assembled photonic crystals (SAPCs) fabricated by using an inkjet printer exhibit extremely weak structural colors and multiple colorful holograms so that they can be utilized in anti-counterfeit measures. We demonstrate that SAPC patterns on a white background are covert under daylight, such that pattern detection can be avoided, but they become overt in a simple manner under strong illumination with smartphone flash light and/or on a black background, showing remarkable potential for anti-counterfeit techniques. Besides, we demonstrate that SAPCs yield different RGB histograms that depend on viewing angles and pattern densities, thus enhancing their cryptographic capabilities. Hence, the structural colorations designed by inkjet printers would not only produce optical holograms for the simple authentication of many items and products but also enable a high-secure anti-counterfeit technique.
可以创建光子晶体结构来操纵电磁波,因此许多研究都集中在为包括传感器、发光二极管、激光器和光纤在内的各种应用设计光子带隙。在此,我们表明,使用喷墨打印机制造的单层自组装光子晶体(SAPC)呈现出极其微弱的结构色和多个彩色全息图,因此它们可用于防伪措施。我们证明,白色背景上的SAPC图案在日光下是隐蔽的,这样可以避免图案被检测到,但在智能手机闪光灯的强光照射下和/或在黑色背景下,它们会以一种简单的方式变得明显,显示出在防伪技术方面的巨大潜力。此外,我们证明,SAPC会产生依赖于视角和图案密度的不同RGB直方图,从而增强了它们的加密能力。因此,由喷墨打印机设计的结构色不仅会为许多物品和产品的简单认证产生光学全息图,还能实现一种高安全性的防伪技术。