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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Microstructure of butterfly wing scale and simulation of structural color
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Microstructure of butterfly wing scale and simulation of structural color

机译:蝴蝶翼鳞的微观结构和结构颜色的模拟

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Structural color has received an increasing amount of attention from researchers. Most hope to realize structural color because of its bright colors, durability and environmental friendliness. In this paper, we observed the butterfly microstructure and then predicted the probable optimal experimental parameters to realize the structural color on the substrate. The SEM images showed mesh and porousness were regularly arranged along the wing scale. The surface model of 2-D wing scale were set up and displayed based on SEM observations. The reflectivity spectrum of wing scale was also measured and analyzed. At the same time, the structural color was deduced based on the colloid nanoparticles ordered arrangement. Supposing the colloidal SiO2 nanoparticles (NPs) assembled on the substrate, the reflective intensity would change with nanoparticle (NP) size and NP film layer number. NP size appeared effecting structural color hue, and layer number effecting color saturation. In addition, structural color also varied observed from the different irradiant angle even if under the same NP size. These observation and deduction results of the structural color could effectively guide the materials design especially for the optical and color development. (C) 2015 Elsevier GmbH. All rights reserved.
机译:结构颜色已受到研究人员越来越多的关注。大多数人希望实现结构颜色,因为它具有鲜艳的颜色,耐用性和环境友好性。在本文中,我们观察了蝴蝶的微观结构,然后预测了可能的最佳实验参数,以实现基板上的结构颜色。 SEM图像显示网眼和多孔性沿机翼尺度规则排列。建立了二维机翼尺度的表面模型,并根据扫描电镜观察结果进行了显示。还测量并分析了机翼刻度尺的反射光谱。同时,基于胶体纳米颗粒的有序排列推导了结构颜色。假设胶体SiO2纳米颗粒(NPs)组装在基板上,反射强度将随纳米颗粒(NP)大小和NP膜层数而变化。出现NP尺寸影响结构色彩,层数影响色彩饱和度。另外,即使在相同的NP尺寸下,从不同的照射角度观察到的结构颜色也不同。这些对结构颜色的观察和推论结果可以有效地指导材料设计,特别是对于光学和颜色开发。 (C)2015 Elsevier GmbH。版权所有。

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