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使用飞升级弯月面进行结构色的三维打印。

Three-Dimensional Printing of Structural Color Using a Femtoliter Meniscus.

作者信息

Bae Jongcheon, Yoo Chanbin, Kim Seonghyeon, Ahn Jinhyuck, Sim Ho Hyung, Kim Je Hyeong, Kim Jung Hyun, Yoon Seog-Young, Kim Ji Tae, Seol Seung Kwon, Pyo Jaeyeon

机构信息

Smart 3D Printing Research Team, Korea Electrotechnology Research Institute (KERI), Changwon 51543, Korea.

School of Materials Science and Engineering, Pusan National University, Busan 46241, Korea.

出版信息

ACS Nano. 2023 Jul 25;17(14):13584-13593. doi: 10.1021/acsnano.3c02236. Epub 2023 Jun 9.

Abstract

Structural colors are produced by the diffraction of light from microstructures. The collective arrangement of substructures is a simple and cost-effective approach for structural coloration represented by colloidal self-assembly. Nanofabrication methods enable precise and flexible coloration by processing individual nanostructures, but these methods are expensive or complex. Direct integration of desired structural coloration remains difficult because of the limited resolution, material-specificity, or complexity. Here, we demonstrate three-dimensional printing of structural colors by direct writing of nanowire gratings using a femtoliter meniscus of polymer ink. This method combines a simple process, desired coloration, and direct integration at a low cost. Precise and flexible coloration is demonstrated by printing the desired structural colors and shapes. In addition, alignment-resolved selective reflection is shown for displayed image control and color synthesis. The direct integration facilitates structural coloration on various substrates, including quartz, silicon, platinum, gold, and flexible polymer films. We expect that our contribution can expand the utility of diffraction gratings across various disciplines such as surface-integrated strain sensors, transparent reflective displays, fiber-integrated spectrometers, anticounterfeiting, biological assays, and environmental sensors.

摘要

结构色是由微观结构对光的衍射产生的。子结构的集体排列是一种简单且经济高效的结构着色方法,以胶体自组装为代表。纳米制造方法通过处理单个纳米结构实现精确且灵活的着色,但这些方法昂贵或复杂。由于分辨率有限、材料特异性或复杂性,所需结构着色的直接集成仍然困难。在此,我们展示了通过使用聚合物墨水的飞升级弯月面直接写入纳米线光栅来进行结构色的三维打印。该方法结合了简单的工艺、所需的着色以及低成本的直接集成。通过打印所需的结构颜色和形状展示了精确且灵活的着色。此外,还展示了用于显示图像控制和颜色合成的对准分辨选择性反射。直接集成便于在包括石英、硅、铂、金和柔性聚合物薄膜等各种基板上进行结构着色。我们期望我们的贡献能够扩展衍射光栅在诸如表面集成应变传感器、透明反射显示器、光纤集成光谱仪、防伪、生物检测和环境传感器等各个学科中的应用。

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