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Viscosity coefficients of nematic liquid crystals: II. Measurements of some nematic liquid crystalsâ€

机译:向列型液晶的粘度系数:II。一些向列液晶的测量â€

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摘要

Oscillating plate and rotational viscosity measurements are reported for a series of liquid crystals and include n-p-cyano-p-hexylbiphenyl (K18), 4-n-hepthyl-4′-cyanobiphenyl (K21), ethyl-cyclohexyl-ethyl-6-fluoro - n-propyl-biphenyl (I32), n-propyl-cyclohexyl-ethyl-6-fluoro - n-butyl-biphenyl (I43) and a n-pentyl-cyclohexyl-cyanophenyl : n-heptyl-cyclohexyl-cyanophenyl mixture. Rotational viscosity measurements were carried out over a temperature range from ambient to 90°C. Comparison of the values at a temperature of 5 K above the below the clearing point indicate an odd-even effect as the chain length of the hydrocarbon tail is altered. The principle viscosities η1, η2, η3 and η45were measured using an oscillating plate viscometer and the temperature dependences used to calculate the activation energies for flow in the various directions. The magnitude of the activation energy is shown to change with the length of the hydrocarbon chain. The incorporation of the cyclohexyl group imparts flexibility and reduces the activation energy flow, whilst the presence of the fluoro group increases the interactions between molecules, and this is reflected in higher values of the viscosity. The change of viscosity with alignment angle is explored for two of the systems studied and the fit to theory investigated. The Leslie-Ericksen coefficients are calculated for these systems and discussed in terms of changes in the molecular interactions.
机译:报告了一系列液晶的振荡板和旋转粘度测量结果,其中包括np-氰基-p-己基联苯(K18),4-n-庚基-4-6-氰基联苯(K21),乙基-环己基-乙基-6-氟-正丙基-联苯(I32),正丙基-环己基-乙基-6-氟-正丁基-联苯(I43)和正戊基-环己基-氰基苯基:正庚基-环己基-氰基苯基混合物。旋转粘度测量是在从环境温度到90°C的温度范围内进行的。在高于清除点以下5 K的温度下进行的值比较表明,随着烃尾链长度的改变,奇偶效应。使用来测量主粘度α 1 ,α 2 ,α 3 和α 45 振荡板粘度计和温度相关性,用于计算各个方向上的流动的活化能。活化能的大小随烃链长度的变化而变化。环己基的引入赋予柔韧性并减少活化能流,而氟基团的存在增加了分子之间的相互作用,这反映在较高的粘度值上。研究了两个所研究的系统的粘度随对准角的变化,并研究了理论的拟合度。 Leslie-Ericksen系数是针对这些系统计算的,并根据分子相互作用的变化进行了讨论。

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  • 来源
    《Liquid Crystals》 |2011年第9期|p.1183-1191|共9页
  • 作者单位

    Department of Pure and Applied Chemistry, University of Strathclyde, Glasgow, Scotland;

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