Investigation of the dielectric parameters of nematic liquid crystals in the boundary layers

G. A. Gaisina, A. Galimbekov
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Abstract

This article presents the results of a study of the dielectric properties of thin liquid crystal layer systems. To study the dielectric parameters of nematic liquid crystals in the boundary layers, the frequency and temperature dependences of the real (ε') and imaginary (ε'') parts of the dielectric constant were determined. We studied samples that are in macroscopic layers and samples located in flat capillary layers (d ~ 0.1 μm). In both cases, the measurement is performed by the same method, namely, the method of temporary dielectric spectroscopy. The entire procedure for measuring, recording, accumulating and processing data was carried out automatically. In this case, the results of dielectric measurements could be presented both in the frequency and time domains. For measurements, a plane-parallel measuring cell made of brass and titanium electrodes was used. It should be noted that the surface of a solid body has a strong influence on the phase state of liquids and liquid crystals in the boundary layer. For example, in such a layer, liquid molecules acquire a mesophase ordering. In the case of NLC, the nematic potential increases and, as a result, the temperature of the nematic-isotropic phase transition increases. However, a shift in the bleaching temperature in the NLC mixture studied by us did not appear due to the smallness of the effect. The substance enclosed in the microspace between the surfaces of the mica has a higher dielectric constant than the corresponding bulk sample. Moreover, such a difference is observed both in the isotropic and in the nematic phases. This can be explained as follows. In a thick layer, a dipole-dipole intermolecular interaction takes place, which reduces the effective dipole moment of the molecules.
向列液晶边界层中介电参数的研究
本文介绍了薄液晶层系统介电性能的研究结果。为了研究向列液晶在边界层中的介电参数,确定了介电常数实部(ε′)和虚部(ε′)与频率和温度的关系。我们研究了宏观层和平面毛细管层(d ~ 0.1 μm)中的样品。在这两种情况下,测量都是通过相同的方法进行的,即临时介电光谱法。测量、记录、积累和处理数据的整个过程都是自动进行的。在这种情况下,介电测量的结果可以同时在频域和时域中呈现。测量时,使用了由黄铜和钛电极制成的平面平行测量单元。需要注意的是,固体的表面对边界层中液体和液晶的相态有很强的影响。例如,在这样一层中,液体分子获得中间相有序。在NLC的情况下,向列势增加,结果,向列-各向同性相变的温度增加。然而,由于影响较小,我们所研究的NLC混合物中没有出现漂白温度的变化。封闭在云母表面之间的微空间中的物质比相应的散装样品具有更高的介电常数。此外,在各向同性和向列相中都观察到这种差异。这可以解释如下。在厚层中,分子间发生偶极-偶极相互作用,降低了分子的有效偶极矩。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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