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Flexible Structural Color Films Based on Electro-Hydrodynamic Inkjet Printing

机译:基于电流动压喷墨印刷的柔性结构彩膜

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Structural coloration based on nanostructures is one of the alternatives that can prevent environmental pollution compared to the use of chemically synthesized materials. This technique has attracted considerable attention for various applications, including displays and sensors. In this study, a photonic crystal structure based on spherical silica was formed to provide structural color using an electro-hydrodynamic (EHD) equipment, a printed electronic system attracting considerable interest. The EHD inkjet printing equipment could print micro- and nanostructures using the voltage applied between the nozzle and substrate. Silica-based ink samples were prepared for use in the EHD equipment. Appropriate printing parameters for the EHD inkjet printing were set using the prepared sample. Spherical silica was printed on a polyimide (PI) film layer. The spherical silica nanoparticles discharged during the EHD inkjet printing were not deformed by the EHD process. A photonic crystal structure was formed on a polydimethylsiloxane (PDMS) layer by EHD printing by covering the PDMS layer on the PI film. The spherical-silica-based photonic crystal structure formed on the PDMS layer with elasticity and flexibility exhibited a color change with bending loads.
机译:基于纳米结构的结构着色是与使用化学合成材料相比,可以防止环境污染的替代品之一。这种技术引起了各种应用的重要关注,包括显示器和传感器。在该研究中,形成基于球形二氧化硅的光子晶体结构以提供使用电流(EHD)设备的结构颜色,这是一种吸引相当兴趣的印刷电子系统。 EHD喷墨印刷设备可以使用喷嘴和基板之间的电压打印微型和纳米结构。制备二氧化硅基油墨样品用于EHD设备。使用制备的样品设定适当的EHD喷墨印刷的打印参数。将球形二氧化硅印在聚酰亚胺(PI)膜层上。在EHD喷墨印刷期间排出的球形二氧化硅纳米粒子不会通过EHD工艺变形。通过在PI膜上覆盖PDMS层,通过EHD印刷在聚二甲基硅氧烷(PDMS)层上形成光子晶体结构。在具有弹性和柔韧性的PDMS层上形成的基于球形二氧化硅的光子晶体结构表现出具有弯曲载荷的颜色变化。

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