Han Jang-Hwan, Kim Doeun, Kim Juhwan, Kim Gyurin, Kim Ji Tae, Jeong Hyeon-Ho
School of Electrical Engineering and Computer Science, Gwangju Institute of Science and Technology, 61005 Gwangju, Republic of Korea.
Department of Mechanical Engineering, The University of Hong Kong, Pokfulam Road, Hong Kong, China.
Nanophotonics. 2022 Mar 21;11(9):1863-1886. doi: 10.1515/nanoph-2021-0806. eCollection 2022 Apr.
Metallic and dielectric nanoscatterers are optical pigments that offer rich resonating coloration in the subwavelength regime with prolonged material consistency. Recent advances in responsive materials, whose mechanical shapes and optical properties can change in response to stimuli, expand the scope of scattering-based colorations from static to active. Thus, active color-changing pixels are achieved with extremely high spatial resolution, in conjunction with various responsive polymers and phase-change materials. This review discusses recent progress in developing such responsive photonic nanopixels, ranging from electrochromic to other color-changing concepts. We describe what parameters permit modulation of the scattering colors and highlight superior functional devices. Potential fields of application focusing on imaging devices, including active full-color printing and flexible displays, information encryption, anticounterfeiting, and active holograms, are also discussed.
金属和介电纳米散射体是光学颜料,它们在亚波长范围内提供丰富的共振着色,且材料稳定性持久。响应材料的最新进展,其机械形状和光学特性可随刺激而改变,将基于散射的着色范围从静态扩展到了动态。因此,结合各种响应聚合物和相变材料,可实现具有极高空间分辨率的动态变色像素。本文综述了开发此类响应光子纳米像素的最新进展,涵盖从电致变色到其他变色概念。我们描述了哪些参数可调节散射颜色,并重点介绍了卓越的功能器件。还讨论了聚焦于成像设备的潜在应用领域,包括动态全彩印刷和柔性显示器、信息加密、防伪以及动态全息图。