Department of Chemical Engineering, University of California, Santa Barbara, Santa Barbara, CA 93106-5080, United States of America.
Bioinspir Biomim. 2018 May 8;13(4):041001. doi: 10.1088/1748-3190/aab738.
Near- and sub-wavelength photonic structures are used by numerous organisms (e.g. insects, cephalopods, fish, birds) to create vivid and often dynamically-tunable colors, as well as create, manipulate, or capture light for vision, communication, crypsis, photosynthesis, and defense. This review introduces the physics of moth eye (ME)-like, biomimetic nanostructures and discusses their application to reduce optical losses and improve efficiency of various optoelectronic devices, including photodetectors, photovoltaics, imagers, and light emitting diodes. Light-matter interactions at structured and heterogeneous surfaces over different length scales are discussed, as are the various methods used to create ME-inspired surfaces. Special interest is placed on a simple, scalable, and tunable method, namely colloidal lithography with plasma dry etching, to fabricate ME-inspired nanostructures in a vast suite of materials. Anti-reflective surfaces and coatings for IR devices and enhancing light extraction from visible light emitting diodes are highlighted.
近场和亚波长光子结构被许多生物(如昆虫、头足类动物、鱼类、鸟类)用于产生鲜艳且通常具有动态可调颜色的,以及用于创建、控制或捕获用于视觉、通讯、伪装、光合作用和防御的光。本综述介绍了蛾眼(ME)状仿生纳米结构的物理原理,并讨论了它们在减少各种光电设备(包括光电探测器、光伏、成像仪和发光二极管)的光损耗和提高效率方面的应用。讨论了在不同长度尺度上结构化和非均匀表面的光物质相互作用,以及用于创建 ME 启发表面的各种方法。特别关注一种简单、可扩展且可调谐的方法,即等离子体干法刻蚀胶体光刻法,用于在大量材料中制造 ME 启发的纳米结构。强调了用于红外器件的抗反射表面和涂层,以及用于提高可见光发光二极管光提取的方法。