结构着色
材料科学
各向同性
制作
光子学
分散性
3D打印
纳米技术
胶体
光子晶体
光学
光电子学
复合材料
化学工程
高分子化学
物理
工程类
医学
病理
替代医学
作者
Ahmet F. Demirörs,Erik Poloni,Maddalena Chiesa,Fabio L. Bargardi,Marco R. Binelli,Wilhelm Woigk,Lucas Daniel Chiba de Castro,Nicole Kleger,Fergal B. Coulter,Alba Sicher,Henning Galinski,Frank Scheffold,André R. Studart
标识
DOI:10.1038/s41467-022-32060-2
摘要
Structural color is frequently exploited by living organisms for biological functions and has also been translated into synthetic materials as a more durable and less hazardous alternative to conventional pigments. Additive manufacturing approaches were recently exploited for the fabrication of exquisite photonic objects, but the angle-dependence observed limits a broader application of structural color in synthetic systems. Here, we propose a manufacturing platform for the 3D printing of complex-shaped objects that display isotropic structural color generated from photonic colloidal glasses. Structurally colored objects are printed from aqueous colloidal inks containing monodisperse silica particles, carbon black, and a gel-forming copolymer. Rheology and Small-Angle-X-Ray-Scattering measurements are performed to identify the processing conditions leading to printed objects with tunable structural colors. Multimaterial printing is eventually used to create complex-shaped objects with multiple structural colors using silica and carbon as abundant and sustainable building blocks.
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