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Polymer stabilized highly tilted antiferroelectric liquid crystals - the influence of monomer structure and phase sequence of base mixtures

机译:聚合物稳定高度倾斜的排式排式液晶 - 单体结构和基础混合物相序的影响

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Polymer stabilization offers unique opportunities for improving features of liquid crystals. In particular, it influences the static and dynamic performance of antiferroelectric liquid crystals (AFLCs) due to the stabilization of surface-stabilized geometry of such self-assembling materials forming anticlinic structures. The main advantages of polymer-stabilized AFLCs consist of a significant decrease of the electro-optical switching time, and a lower sensitivity to mechanical shock and temperature changes in working devices. This work experimentally analyzes the effect of functionality of selected mesogenic monomers on the properties of new developed high-tilted AFLC mixtures with different phase sequences, before and after polymer stabilization. It was found that tetra functional monomers (especially those with non-chiral terminal chains) reduce the thermal stability of antiferroelectric phase and increase helical pitch at low temperatures before polymerization. However, they reduce values of the tilt angle and spontaneous polarization and simultaneously flatten the temperature dependence after polymerization to a greater extent than bifunctional monomers. Tetrafunctional monomers improve electro-optical characteristics of tested AFLC mixtures after polymer stabilization. On the other hand, polymer-stabilized materials based on bifunctional monomers and LC mixtures with direct SmCA* - Iso phase transition show acceptable electro-optical performance in device cells. Most importantly, the obtained results confirm definite advantages of using mixtures with direct SmCA* - Iso phase transition when designing new polymer-stabilized AFLC materials with appropriate features in effects based on surface-stabilized geometry. (C) 2020 Elsevier B.V. All rights reserved.
机译:聚合物稳定化为改善液晶特性提供了独特的机会。特别是,由于形成反斜结构的这种自组装材料的表面稳定几何结构的稳定,它影响了反铁电液晶(AFLC)的静态和动态性能。聚合物稳定AFLC的主要优点包括显著缩短电光开关时间,降低对机械冲击和工作装置温度变化的敏感性。这项工作通过实验分析了选定的介晶单体的功能性对新开发的具有不同相序的高倾斜AFLC混合物在聚合物稳定前后的性能的影响。研究发现,四官能团单体(尤其是具有非手性末端链的单体)在聚合前的低温下会降低反铁电相的热稳定性,增加螺旋间距。然而,与双功能单体相比,它们在更大程度上降低了倾斜角和自发极化的值,同时使聚合后的温度依赖性变平。在聚合物稳定后,四官能团单体改善了测试AFLC混合物的电光特性。另一方面,基于双功能单体和具有直接SmCA*-Iso相变的LC混合物的聚合物稳定材料在器件单元中显示出可接受的电光性能。最重要的是,所获得的结果证实了在基于表面稳定几何结构设计具有适当效果特征的新型聚合物稳定AFLC材料时,使用具有直接SmCA*-Iso相变的混合物的明确优势。(C) 2020爱思唯尔B.V.版权所有。

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