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Printing of Responsive Photonic Cellulose Nanocrystal Microfilm Arrays

机译:响应式光子纤维素纳米晶体微膜阵列的印刷

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Interactive materials capable of changing appearance upon exposure to external stimuli, such as photonic inks, are generally difficult to achieve on a large scale as they often require self-assembly processes that are difficult to control macroscopically. Here this problem is overcome by preparing arrays of cellulose nanocrystal (CNC) microfilms from discrete nanoliter sessile droplets. The obtained microfilms show extremely uniform and intense color, enabling exceptional consistency in optical appearance across the entire array. The color can be controlled through the initial ink formulation, enabling the printing of polychromatic dot-matrix images. Moreover, the high surface-to-volume ratio of the microfilms and the intrinsic hydrophilicity of the natural building block allow for a dramatic real-time colorimetric response to changes in relative humidity. The printed CNC microfilm arrays overcome the existing issues of scalability, optical uniformity, and material efficiency, which have held back the adoption of CNC-based photonic materials in cosmetics, interactive-pigments, or anticounterfeit applications.
机译:由于暴露于外界刺激下而能够改变外观的交互式材料(例如光子墨水)通常很难大规模实现,因为它们通常需要自组装过程,而这些过程很难从宏观上进行控制。在这里,通过从离散的纳升无柄小滴制备纤维素纳米晶体(CNC)微膜阵列可以克服这个问题。所获得的微缩胶片显示出极其均匀和强烈的色彩,从而使整个阵列的光学外观具有出色的一致性。可以通过初始墨水配方来控制颜色,从而可以打印多色点矩阵图像。此外,微膜的高体积比和天然结构单元的固有亲水性允许对相对湿度的变化进行实时的比色反应。印刷的CNC微膜阵列克服了可扩展性,光学均匀性和材料效率方面的现有问题,这些问题阻碍了在化妆品,交互式颜料或防伪应用中采用基于CNC的光子材料。

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