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用于直接书写的含光子微珠的结构色墨水。

Structural Color Inks Containing Photonic Microbeads for Direct Writing.

作者信息

Kim Jong Hyun, Kim Jong Bin, Kim Shin-Hyun

机构信息

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

出版信息

ACS Appl Mater Interfaces. 2024 Apr 9. doi: 10.1021/acsami.4c01224.

Abstract

Printing structurally colored patterns is of great importance for providing customized graphics for various purposes. Although a direct writing technique has been developed, the use of colloidal dispersions as photonic inks requires delicate printing conditions and restricts the mechanical and optical properties of printed patterns. In this work, we produce elastic photonic microbeads through scalable bulk emulsification and formulate photonic inks containing microbeads for direct writing. To produce the microbeads, a photocurable colloidal dispersion is emulsified into a highly concentrated sucrose solution via vortexing, which results in spherical emulsion droplets with a relatively narrow size distribution. The microbeads are produced by photopolymerization and are then suspended in urethane acrylate resin at volume fractions of 0.35-0.45. The photonic inks retain high color saturation of the microbeads and offer enhanced printability and dimensional control on various target substrates including fabrics, papers, and even skins. Importantly, the printed graphics show high mechanical stability as the elastic microbeads are embedded in the polyurethane matrix. Moreover, the colors show a wide viewing angle and low-angle dependency due to the optical isotropy of individual microbeads and light refraction at the air-matrix interface. We postulate that this versatile direct writing technique is potentially useful for structural color coating and printing on the surfaces of arbitrary 3D objects.

摘要

打印结构色图案对于为各种目的提供定制图形非常重要。尽管已经开发出一种直接写入技术,但使用胶体分散体作为光子墨水需要精细的打印条件,并且会限制打印图案的机械和光学性能。在这项工作中,我们通过可扩展的本体乳化法制备了弹性光子微珠,并配制了含有微珠的光子墨水用于直接写入。为了制备微珠,将光固化胶体分散体通过涡旋乳化到高浓度蔗糖溶液中,这会产生尺寸分布相对较窄的球形乳液滴。微珠通过光聚合制备,然后以0.35 - 0.45的体积分数悬浮在聚氨酯丙烯酸酯树脂中。光子墨水保留了微珠的高色彩饱和度,并在包括织物、纸张甚至皮肤在内的各种目标基材上提供了增强的可印刷性和尺寸控制。重要的是,由于弹性微珠嵌入聚氨酯基质中,打印的图形显示出高机械稳定性。此外,由于单个微珠的光学各向同性以及在空气 - 基质界面处的光折射,颜色显示出宽视角和低角度依赖性。我们推测这种通用的直接写入技术对于在任意3D物体表面进行结构色涂层和打印可能是有用的。

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