不同类型SOR纳米杂质对同向异性排列向列液晶电导率离子组分值影响的特殊性[6]СВ

Y. Garbovskiy, P. Kopčanský, O. Kovalchuk, T. Kovalchuk, L. V. Volokh
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摘要

本文报道了SOR5、SOR10和SOR15纳米杂质对同向热带排列向列液晶6CB离子电导率的影响。在室温(293 K)下,在宽频率范围内(从6 Hz到106 Hz)进行电学测量。电导率的最大变化发生在低频范围(小于103 Hz),这取决于纳米杂质的类型及其浓度。尽管SOR5、SOR10和SOR15的化学组成相似,但所测样品的电导率对纳米杂质浓度的依赖关系却有很大不同。在SOR10杂质的情况下,电导率的离子成分取决于SOR10的浓度,根据指数约等于0.5的幂律,这是典型的电荷载流子的双分子重组(即弱电解质的行为)。含有SOR5和SOR15纳米杂质的液晶样品在低浓度区域(在0.01和0.05质量%之间)表现出相似的方式。有趣的是,进一步增加纳米掺杂剂的浓度(0.05质量%)会导致显著不同的行为。掺杂SOR5的液晶的电导率急剧增加,而含有SOR15的液晶的电导率则下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Peculiarities of the effect of different types of SOR nanoimpurities on the value of ionic component of the electrical conductivity of the homeotropically aligned nematic liquid crystal 6 СВ
In this paper, the effects of SOR5, SOR10, and SOR15 nanoimpurities on the value of the ionic conductivity of the homeotropically aligned nematic liquid crystal 6CB are reported. Electrical measurements are carried out within a wide frequency range (from 6 Hz to 106 Hz) at room temperature (293 K). The largest changes in the electrical conductivity occur in the low-frequency range (less than 103 Hz) and depend on the type of nanoimpurity and on its concentration. Despite the similarity in the chemical composition of SOR5, SOR10, and SOR15, the measured dependences of the electrical conductivity of the studied samples on the concentration of nanoimpurities are substantially different. In the case of the SOR10 impurity, the ionic component of the electrical conductivity depends on the concentration of SOR10 according to a power law with an exponent approximately equal to 0.5, which is typical for the bimolecular recombination of charge carriers (i.e., the behavior of a weak electrolyte). Liquid crystal samples containing SOR5 and SOR15 nanoimpurities behave in a similar way in a low concentration region (between 0.01 and 0.05 mass %). Interestingly, further increase in the concentration of nanodopants (>0.05 mass %) results in a dramatically different behavior. The electrical conductivity of liquid crystals doped with SOR5 undergoes a sharp increase whereas the electrical conductivity of samples containing SOR15 decreases.
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