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首页> 外文期刊>Photonics and Nanostructures: Fundamentals and Applications >Non-iridescent structural colors from uniform-sized SiO2 colloids
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Non-iridescent structural colors from uniform-sized SiO2 colloids

机译:均匀大小的SiO2胶体的非呈呈呈虹彩结构颜色

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摘要

Structural colors have recently attracted interest from diverse fields of research due to their ease of fabrication and eco-friendliness. These types of colors are, in principle, achieved by periodically arranged submicron-diameter colloidal particles. The interaction of light with a structure containing long-range ordered colloidal particles leads to coloration; this usually varies depending on the angle of observation (iridescence). However, the majority of the applications demand constant color that is independent of the viewing angle (non-iridescence). In this work, silica colloids were obtained using the Stober method at different sizes from 150 to 300 nm in an alcoholic dispersion. The casting of the dispersion on a substrate leaves behind a photonic crystal showing a colorful iridescent film. However, centrifugation and redispersion of the SiO2 particles into fresh solvent may cause the formation of small, aggregated silica domains in the new dispersion. The casting of this dispersion allows for the development of photonic glass, presumably due to the accumulation of aggregates showing stable colloidal film independent of viewing angle. Moreover, depending on the size of the silica colloids, non-iridescent photonic glasses with various colors (violet, blue, green, and orange) are obtained. (C) 2018 Elsevier B.V. All rights reserved.
机译:结构色由于其易于制作和环保,最近引起了不同研究领域的兴趣。原则上,这些颜色是由周期性排列的亚微米直径的胶体颗粒实现的。光与含有长程有序胶体颗粒的结构的相互作用导致着色;这通常取决于观察角度(彩虹色)。然而,大多数应用要求恒定的颜色,与视角无关(非彩虹色)。在这项工作中,使用Stober法在酒精分散体中获得了不同大小的150至300 nm的二氧化硅胶体。将色散浇铸在基底上留下一个光子晶体,显示出彩色的彩虹膜。然而,将SiO2颗粒离心并重新分散到新鲜溶剂中可能会导致在新的分散液中形成小的聚集二氧化硅畴。这种色散的浇铸允许光子玻璃的发展,这可能是由于聚集体的聚集显示出稳定的胶体膜,与视角无关。此外,根据硅胶体的大小,可以获得各种颜色(紫色、蓝色、绿色和橙色)的非彩虹光子玻璃。(C) 2018爱思唯尔B.V.版权所有。

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