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采用3D打印低折射率纳米柱的全彩和灰度绘画

Full Color and Grayscale Painting with 3D Printed Low-Index Nanopillars.

作者信息

Wang Hao, Ruan Qifeng, Wang Hongtao, Rezaei Soroosh Daqiqeh, Lim Kevin T P, Liu Hailong, Zhang Wang, Trisno Jonathan, Chan John You En, Yang Joel K W

机构信息

Engineering Product Development Pillar, Singapore University of Technology and Design, 8 Somapah Road, Singapore 487372, Singapore.

Cavendish Laboratory, JJ Thomson Avenue, Cambridge CB3 0HE, United Kingdom.

出版信息

Nano Lett. 2021 Jun 9;21(11):4721-4729. doi: 10.1021/acs.nanolett.1c00979. Epub 2021 May 21.

Abstract

Sculpting nanostructures into different geometries in either one or two dimensions produces a wide range of colorful elements in microscopic prints. However, achieving different shades of gray and control of color saturation remain challenging. Here, we report a complete approach to color and grayscale generation based on the tuning of a single nanostructure geometry. Through two-photon polymerization lithography, we systematically investigated color generation from the basic single nanopillar geometry in low-refractive-index ( < 1.6) material. Grayscale and full color palettes were achieved that allow decomposition onto hue, saturation, and brightness values. This approach enabled the "painting" of arbitrary colorful and grayscale images by mapping desired prints to precisely controllable parameters during 3D printing. We further extend our understanding of the scattering properties of the low-refractive-index nanopillar to demonstrate grayscale inversion and color desaturation and steganography at the level of single nanopillars.

摘要

将纳米结构雕刻成一维或二维的不同几何形状,会在微观印刷品中产生各种各样的彩色元素。然而,实现不同深浅的灰色以及控制色彩饱和度仍然具有挑战性。在此,我们报告一种基于调整单个纳米结构几何形状来生成颜色和灰度的完整方法。通过双光子聚合光刻技术,我们系统地研究了低折射率(<1.6)材料中基本单个纳米柱几何形状产生的颜色。实现了灰度和全彩调色板,可分解为色调、饱和度和亮度值。这种方法通过在3D打印过程中将所需的印刷品映射到精确可控的参数,实现了对任意彩色和灰度图像的“绘制”。我们进一步扩展了对低折射率纳米柱散射特性的理解,以展示单个纳米柱水平上的灰度反转、色彩去饱和以及隐写术。

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