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首页> 外文期刊>ACS nano >Scalable Inkjet-Based Structural Color Printing by Molding Transparent Gratings on Multilayer Nanostructured Surfaces
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Scalable Inkjet-Based Structural Color Printing by Molding Transparent Gratings on Multilayer Nanostructured Surfaces

机译:通过在多层纳米结构表面上模塑透明光栅来缩放基于喷墨的结构彩色印刷

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摘要

To enable customized manufacturing of structural colors for commercial applications, up-scalable, low-cost, rapid, and versatile printing techniques are highly demanded. In this paper, we introduce a viable strategy for scaling up production of custom-input images by patterning individual structural colors on separate layers, which are then vertically stacked and recombined into full-color images. By applying this strategy on molded-ink-on-nanostructured-surface printing, we present an industry applicable inkjet structural color printing technique termed multilayer molded-ink-on-nanostructured-surface (M-MIONS) printing, in which structural color pixels are molded on multiple layers of nanostructured surfaces. Transparent colorless titanium dioxide nanoparticles were inkjet-printed onto three separate transparent polymer substrates, and each substrate surface has one specific subwavelength grating pattern for molding the deposited nanoparticles into structural color pixels of red, green, or blue primary color. After index-matching lamination, the three layers were vertically stacked and bonded to display a color image. Each primary color can be printed into a range of different shades controlled through a half-tone process, and full colors were achieved by mixing primary colors from three layers. In our experiments, an image size as big as 10 cm by 10 cm was effortlessly achieved, and even larger images can potentially be printed on recombined grating surfaces. In one application example, the M-MIONS technique was used for printing customizable transparent color optical variable devices for protecting personalized security documents. In another example, a transparent diffractive color image printed with the M-MIONS technique was pasted onto a transparent panel for overlaying colorful information onto one's view of reality.
机译:为了使商业应用的定制制造结构颜色,高要求可升级,低成本,快速和多功能的印刷技术。在本文中,我们通过在单独的层上图案化各​​个结构颜色来缩放自定义输入图像的可行策略,然后垂直堆叠并重新组合成全彩色图像。通过将该策略应用于模塑墨水 - 纳米结构印刷,我们呈现了一种行业适用的喷墨结构彩色印刷技术,称为多层模制 - 墨水 - 纳米结构 - 表面(M-MION)印刷,其中结构颜色像素是在多层纳米结构表面上模塑。将透明无色二氧化钛纳米颗粒被喷射到三个单独的透明聚合物基板上,每个基板表面具有一种特定的亚壳长度光栅图案,用于将沉积的纳米颗粒模制成红色,绿色或蓝色颜色的结构颜色像素。在匹配匹配的层压之后,三层垂直堆叠并键合以显示彩色图像。每个原色颜色都可以印刷到通过半色调过程控制的一系列不同色调中,通过将原色与三层混合来实现全颜色。在我们的实验中,毫不费力地实现了大约10cm的图像尺寸,甚至可以在重组光栅表面上打印甚至更大的图像。在一个应用示例中,M-MION技术用于打印可定制的透明彩色光学变量设备,用于保护个性化安全文件。在另一个例子中,用M-MION技术印刷的透明衍射彩色图像被粘贴到透明板上,以将多彩信息覆盖到一个人的现实看法。

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