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受生物启发的具有明亮结构颜色的胶体非晶态阵列,通过控制厚度和黑色背景得到增强。

Bio-Inspired Bright Structurally Colored Colloidal Amorphous Array Enhanced by Controlling Thickness and Black Background.

机构信息

Department of Molecular Design and Engineering, Nagoya University, Furo-cho, Chikusa-ku, Nagoya, 464-8603, Japan.

Department of Physics, Faculty of Science and Technology, Tokyo University of Science, 2641 Yamazaki, Noda, 278-8510, Japan.

出版信息

Adv Mater. 2017 Jul;29(26). doi: 10.1002/adma.201605050. Epub 2017 Apr 26.

Abstract

Inspired by Steller's jay, which displays angle-independent structural colors, angle-independent structurally colored materials are created, which are composed of amorphous arrays of submicrometer-sized fine spherical silica colloidal particles. When the colloidal amorphous arrays are thick, they do not appear colorful but almost white. However, the saturation of the structural color can be increased by (i) appropriately controlling the thickness of the array and (ii) placing the black background substrate. This is similar in the case of the blue feather of Steller's jay. Based on the knowledge gained through the biomimicry of structural colored materials, colloidal amorphous arrays on the surface of a black particle as the core particle are also prepared as colorful photonic pigments. Moreover, a structural color on-off system is successfully built by controlling the background brightness of the colloidal amorphous arrays.

摘要

受斯泰勒的海雀启发,人们创造出了角度无关结构色材料,它由亚微米级细球形二氧化硅胶体粒子的无定形阵列组成。当胶体无定形阵列较厚时,它们不会呈现出彩色,而是几乎呈现为白色。然而,通过以下两种方法可以提高结构色的饱和度:(i)适当控制阵列的厚度,(ii)放置黑色背景衬底。这与斯泰勒的海雀的蓝色羽毛情况类似。基于对结构色材料的仿生学研究,我们还在黑色颗粒作为核心颗粒的表面制备了胶体无定形阵列,作为彩色光子颜料。此外,通过控制胶体无定形阵列的背景亮度,我们成功构建了一个结构色开-关系统。

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