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The formation of supramolecular liquid-crystal gels for enhancing the electro-optical properties of twisted nematic liquid crystals

机译:超分子液晶凝胶的形成,以增强扭曲向列液晶的电光性能

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摘要

We report that the supramolecular liquid-crystal (LC) physical gel can be formed through the fibrous self-assembly of the polyfluorene-based π-conjugated polymer, poly(9,9-dioctylfluorene-alt-benzothiadia-zole) (F8BT), in twisted nematic LC system for the first time. With the utility of alignment layers, the F8BT molecules can be aligned and formed the LC physical gels with the formation of self-assembled supramolecular structures in the twisted nematic LCs. In contrast to conventional LC physical gels, the presence of anisotropic π-conjugated structure makes the twisted nematic LC system exhibit excellent electro-optical properties of driving voltage reduction and contrast ratio enhancement owing to the conjugated polymer having a high π-electron delocalization degree which can efficiently drive LC molecules in much lower operating voltages. The self-assembled supramolecular network has revealed the potential for applying in various LC display devices with the ability of improving their electro-optical performance.
机译:我们报告说,超分子液晶(LC)物理凝胶可以通过聚芴基π共轭聚合物,聚(9,9-二辛基芴-alt-苯并噻二唑-zole)(F8BT)的纤维自组装形成,首次在扭曲向列液相色谱系统中应用。利用取向层,F8BT分子可以取向并形成LC物理凝胶,并在扭曲向列LC中形成自组装的超分子结构。与传统的LC物理凝胶相比,各向异性的π共轭结构的存在使扭曲的向列LC体系由于驱动了高π电子离域度的共轭聚合物而具有出色的驱动电压降低和对比度提高的电光特性。可以以低得多的工作电压有效地驱动LC分子。自组装的超分子网络揭示了具有改善其电光性能的能力,可用于各种液晶显示设备的潜力。

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