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Plasmonic- and dielectric-based structural coloring: from fundamentals to practical applications

机译:基于等离子和电介质的结构着色:从基础到实际应用

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摘要

Structural coloring is production of color by surfaces that have microstructure fine enough to interfere with visible light; this phenomenon provides a novel paradigm for color printing. Plasmonic color is an emergent property of the interaction between light and metallic surfaces. This phenomenon can surpass the diffraction limit and achieve near unlimited lifetime. We categorize plasmonic color filters according to their designs (hole, rod, metal–insulator–metal, grating), and also describe structures supported by Mie resonance. We discuss the principles, and the merits and demerits of each color filter. We also discuss a new concept of color filters with tunability and reconfigurability, which enable printing of structural color to yield dynamic coloring at will. Approaches for dynamic coloring are classified as liquid crystal, chemical transition and mechanical deformation. At the end of review, we highlight a scale-up of fabrication methods, including nanoimprinting, self-assembly and laser-induced process that may enable real-world application of structural coloring.
机译:结构着色是指具有足够细微结构以干扰可见光的表面产生的颜色。这种现象为彩色印刷提供了一种新颖的范例。等离子体颜色是光与金属表面之间相互作用的一种新兴属性。这种现象可能会超过衍射极限,并达到近乎无限的使用寿命。我们根据等离激元彩色滤光片的设计(孔,棒,金属-绝缘体-金属,光栅)对它们进行分类,并描述由Mie共振支持的结构。我们讨论了每个滤色镜的原理以及优缺点。我们还将讨论具有可调性和可重新配置性的滤色镜的新概念,该滤镜能够打印结构色以随意产生动态着色。动态着色的方法分为液晶,化学转变和机械变形。在评论的最后,我们重点介绍了制造方法的扩大规模,包括纳米压印,自组装和激光诱导工艺,这些方法可能使结构着色在现实世界中得到应用。

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