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基于完美光吸收的等离子体超表面的结构彩色印刷。

Structural color printing based on plasmonic metasurfaces of perfect light absorption.

作者信息

Cheng Fei, Gao Jie, Luk Ting S, Yang Xiaodong

机构信息

Department of Mechanical and Aerospace Engineering, Missouri University of Science and Technology, Rolla, MO 65409, USA.

Center for Integrated Nanotechnologies, Sandia National Laboratories, Albuquerque, NM 87185, USA.

出版信息

Sci Rep. 2015 Jun 5;5:11045. doi: 10.1038/srep11045.

Abstract

Subwavelength structural color filtering and printing technologies employing plasmonic nanostructures have recently been recognized as an important and beneficial complement to the traditional colorant-based pigmentation. However, the color saturation, brightness and incident angle tolerance of structural color printing need to be improved to meet the application requirement. Here we demonstrate a structural color printing method based on plasmonic metasurfaces of perfect light absorption to improve color performances such as saturation and brightness. Thin-layer perfect absorbers with periodic hole arrays are designed at visible frequencies and the absorption peaks are tuned by simply adjusting the hole size and periodicity. Near perfect light absorption with high quality factors are obtained to realize high-resolution, angle-insensitive plasmonic color printing with high color saturation and brightness. Moreover, the fabricated metasurfaces can be protected with a protective coating for ambient use without degrading performances. The demonstrated structural color printing platform offers great potential for applications ranging from security marking to information storage.

摘要

采用等离子体纳米结构的亚波长结构色滤波和印刷技术最近被认为是对传统基于着色剂的色素沉着的一种重要且有益的补充。然而,结构色印刷的色彩饱和度、亮度和入射角耐受性需要提高以满足应用需求。在此,我们展示了一种基于完美光吸收的等离子体超表面的结构色印刷方法,以改善诸如饱和度和亮度等色彩性能。在可见光频率下设计了具有周期性孔阵列的薄层完美吸收体,并通过简单地调整孔尺寸和周期来调节吸收峰。获得了具有高品质因数的近乎完美的光吸收,以实现具有高色彩饱和度和亮度的高分辨率、角度不敏感的等离子体彩色印刷。此外,所制备的超表面可以用保护涂层进行保护,以便在环境中使用而不会降低性能。所展示的结构色印刷平台在从安全标记到信息存储等各种应用中具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0723/4457024/472037cafab5/srep11045-f1.jpg

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