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用胶体光子墨水直接书写定制结构色图形。

Direct writing of customized structural-color graphics with colloidal photonic inks.

作者信息

Kim Jong Bin, Chae Changju, Han Sang Hoon, Lee Su Yeon, Kim Shin-Hyun

机构信息

Department of Chemical and Biomolecular Engineering (BK21 four), Korea Advanced Institute of Science and Technology (KAIST), Daejeon 34141, Republic of Korea.

Division of Advanced Materials, Korea Research Institute of Chemical Technology (KRICT), Daejeon 34114, Republic of Korea.

出版信息

Sci Adv. 2021 Nov 26;7(48):eabj8780. doi: 10.1126/sciadv.abj8780. Epub 2021 Nov 24.

Abstract

Colloidal crystals and glasses have been designed to develop structural colors that are tunable, iridescent, nonfading, and nontoxic. However, the low printability and poor printing quality have restricted their uses. Here, we report the direct writing of structural-color graphics with high brightness and saturation using colloidal inks. The inks are prepared by dispersing silica particles in acrylate-based resins, where the volume fraction is optimized to simultaneously provide pronounced coloration and satisfactory printing rheology. With the inks, any macroscopic design of lines and faces can be directly written on various substrates, where the microscopic colloidal arrangement is set to be either crystalline or amorphous depending on the resin viscosity to control the iridescence of the colors. In addition, the high mechanical stability and controlled modulus enable the graphics to be surface-transferred, origami-folded, or elastically stretched. This direct-writing approach provides unprecedented levels of controllability and versatility for pragmatic uses of structural colors.

摘要

胶体晶体和玻璃已被设计用于产生可调节、呈虹彩、不褪色且无毒的结构色。然而,其低可印刷性和较差的印刷质量限制了它们的应用。在此,我们报道了使用胶体墨水直接书写具有高亮度和饱和度的结构色图形。这些墨水是通过将二氧化硅颗粒分散在丙烯酸酯基树脂中制备而成,其中体积分数经过优化,以同时实现显著的显色效果和令人满意的印刷流变学性能。使用这些墨水,可以在各种基材上直接书写任何线条和图形的宏观设计,根据树脂粘度将微观胶体排列设置为晶体或非晶体,以控制颜色的虹彩效果。此外,高机械稳定性和可控模量使这些图形能够进行表面转移、折纸折叠或弹性拉伸。这种直接书写方法为结构色的实际应用提供了前所未有的可控性和多功能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6630/8612532/b388650b66b9/sciadv.abj8780-f1.jpg

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