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Fabrication Technology for Flexible Ferroelectric Liquid Crystal Display Devices Using Polymer Walls and Fibers

机译:使用聚合物壁和纤维的柔性铁电液晶显示设备的制造技术

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We report a fabrication technology for plastic-substrate display devices containing monostable ferroelectric liquid crystal (FLC) and molecularly-aligned polymer structures for realizing flexible moving-image displays. In the device fabrication process, polymer walls and fibers (which stabilize the thin plastic film substrates and which monostabilize the FLC alignment to create grayscale capability respectively) are formed sequentially by photopolymerization-induced phase separation using a two-step UV irradiation method. In the first exposure, an FLC/monomer solution that was sandwiched between nibbed polyimide alignment layers was irradiated with UV light through a photomask. Molecularly-aligned polymer walls were formed in the exposed areas when another nematic liquid crystal material (5% or more) was mixed in advance into the solution to maintain the homogeneous alignment of the FLC/monomer molecules during the wall formation. In the second exposure, unreacted monomers that remained in the masked areas were photopolymerized by irradiation with uniform UV light without the use of a photomask, and consequently, moleculaiiy-aligned polymer fibers were formed in the FLC. A4-paper-sized flexible FLC displays were fabricated by a plastic-substrate-based process that uses printing and transfer techniques. Full-color moving images were displayed on the FLC panel (96×64 pixels) using a flexible backlight.
机译:我们报告了一种制造技术,用于包含单稳态铁电液晶(FLC)和分子排列的聚合物结构的塑料基板显示设备,以实现灵活的运动图像显示。在器件制造过程中,聚合物壁和纤维(分别稳定塑料薄膜基板并分别稳定FLC取向以产生灰度功能)是通过使用两步UV照射方法的光聚合引发的相分离顺序形成的。在第一次曝光中,通过光掩模用紫外光照射夹在有节聚酰亚胺取向层之间的FLC /单体溶液。当将另一种向列液晶材料(5%或更多)预先混入溶液中时,在暴露区域会形成分子排列的聚合物壁,从而在壁形成过程中保持FLC /单体分子的均匀排列。在第二次曝光中,通过在不使用光掩模的情况下用均匀的紫外线照射而使留在掩模区域中的未反应的单体光聚合,因此,在FLC中形成了分子取向的聚合物纤维。 A4纸大小的柔性FLC显示器是通过使用印刷和转移技术的基于塑料基板的工艺制造的。使用柔性背光在FLC面板(96×64像素)上显示全色运动图像。

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