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Photonic Shape Memory Chiral Nematic Polymer Coatings with Changing Surface Topography and Color

机译:具有变化的表面形貌和颜色的光子形状记忆手性向列型聚合物涂层

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摘要

The fabrication of shape memory coatings that change both reflectivity and topography is hampered by the lack of facile methods and materials. Now, shape memory photonic coatings are fabricated by high-speed flexographic printing and UV-curing in air of a chiral nematic liquid crystal ink. Deformable polymeric films with a red reflection band and a smooth surface topography are obtained which can be thermally programmed above room temperature by using a rough stamp. This thermomechanical programming results in a temporary rough surface topography leading to surface scattering and as a result a gray color below room temperature. By heating the coatings, a shape recovery to the permanent state is observed, thereby restoring the smooth surface topography and the iridescent red reflection color. It is shown that this recovery is highly temperature dependent, which allows for a fast and distinct optical and topography change upon exceeding room temperature. These thermoresponsive photonic crystal coatings have a great potential as low-cost optical sensors, smart adhesives, and adaptive biosurfaces.
机译:缺乏易用的方法和材料阻碍了同时改变反射率和形貌的形状记忆涂层的制造。现在,通过高速柔性版印刷和手性向列型液晶油墨在空气中的紫外线固化来制造形状记忆光子涂层。获得具有红色反射带和光滑的表面形貌的可变形聚合物膜,其可以通过使用粗糙的压模在室温以上进行热编程。这种热机械编程会导致暂时的粗糙表面形貌,从而导致表面散射,结果是低于室温的灰色。通过加热涂层,观察到形状恢复到永久状态,从而恢复了光滑的表面形貌和虹彩红色反射色。已经表明,这种恢复高度依赖于温度,这允许在超过室温时快速而独特的光学和形貌变化。这些热响应光子晶体涂层具有低成本,光学传感器,智能粘合剂和自适应生物表面的巨大潜力。

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