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A Process for Fabricating Flexible Reflective Display Devices Using a Composite Film of Ferroelectric Liquid Crystal and Polymer

机译:使用铁电液晶和聚合物的复合膜制造柔性反射显示装置的方法

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We have developed a process for fabricating flexible reflective display devices using thin composite films of aligned polymer-monostabilized ferroelectric liquid crystals encased between plastic substrates. In order to precisely control the thickness of these films, photolithography is used to fabricate spacer posts on a substrate, and a printing technique that can form a liquid crystal/monomer solution film on the substrate uniformly. Control voltages are applied to the layer via transparent electrodes; in order to prevent a short circuit between these electrodes, an insulator layer is also formed on the other substrate. Once the two substrates are attached to one another, polymer walls and fibers are created in the liquid crystal layer between the two substrates by photopolymerization-induced phase separation which was induced by two-step exposure of ultraviolet light. A fabricated device is sandwiched between a polarizer and a diffuse mirror to make a reflective display. Uniform display operation was obtained when the device was driven with a voltage, even when the device was bent with a 5-cm radius of curvature.
机译:我们已经开发了一种制造柔性反射型显示设备的工艺,该工艺使用的是包裹在塑料基板之间的聚合物单稳态铁电液晶的取向复合薄膜。为了精确地控制这些膜的厚度,使用光刻法在基板上制造间隔柱,并且使用可以在基板上均匀地形成液晶/单体溶液膜的印刷技术。通过透明电极将控制电压施加到该层。为了防止这些电极之间的短路,在另一基板上也形成绝缘体层。一旦将两个基板彼此连接,就通过光聚合引起的相分离在两个基板之间的液晶层中形成聚合物壁和纤维,所述相聚合是由紫外线的两步曝光引起的。所制造的装置被夹在偏振器和漫反射镜之间以制成反射显示器。当用电压驱动设备时,即使设备弯曲了5厘米的曲率半径,也能获得均匀的显示操作。

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