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Raman scattering studies of order parameters in liquid crystalline dimers exhibiting the nematic and twist-bend nematic phases

机译:呈现向列相和扭曲弯曲向列相的液晶二聚体中有序参数的拉曼散射研究

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Polarized Raman Spectroscopy (PRS) is used to quantify the orientational order in the conventional (N) and twist-bend (NTB) nematic phases of a homologous series of liquid crystalline dimers. The dimers investigated have 7, 8, 9 and 11 methylene groups connecting two cyanobiphenyl mesogens and data for 4-pentyl-4'-cyanobiphenyl (5CB) and 4-octyl-4'-cyanobiphenyl (8CB) are included for comparison. Simulated and measured Raman spectra for the materials are compared. PRS is used to determine both < P-2 > and < P-4 > order parameters across the nematic temperature range and immediately below the NTB-N phase transition using a model that takes into account the molecular bend of the odd dimers, which is described in detail. In the nematic phase, the odd dimers are found to exhibit rather low order parameters with < P-2 > taking values between 0.3 and 0.5 and < P-4 > about 0.25. In contrast, the even dimer shows extremely high values of the order parameters with < P-2 > taking values between 0.7 and 0.8 and < P-4 > between 0.4 and 0.45. For the odd dimers, the values of < P-2 > in the NTB phase are similar to those of the N phase, whereas < P-4 > jumps by approximately 5-10% and then decreases with temperature. On comparing the experimental data with the theoretical predictions, we find reasonable qualitative agreement for all materials with molecular field theory. The odd dimers, however, show higher < P-4 > values than obtained from theoretical models, a factor attributed to the neglect of molecular flexibility and biaxiality in the PRS analysis.
机译:偏振拉曼光谱法(PRS)用于量化一系列液晶二聚体的常规(N)和扭曲弯曲(NTB)向列相的取向顺序。研究的二聚体具有连接两个氰基联苯液晶元的7、8、9和11个亚甲基,并且将4-戊基-4'-氰基联苯(5CB)和4-辛基-4'-氰基联苯(8CB)的数据包括在内以作比较。比较了材料的模拟和测量拉曼光谱。 PRS用于确定向列温度范围内且紧接在NTB-N相变以下的阶参数,其使用的模型考虑了奇二聚体的分子弯曲,即详细描述。在向列相中,发现奇二聚体表现出相当低阶的参数,其中的值介于0.3和0.5之间,而约0.25。相反,偶数二聚体显示极高的阶数参数值,其中取值介于0.7和0.8之间,而取值介于0.4和0.45之间。对于奇数二聚体,NTB相中的值与N相中的相似,而的跃迁大约5-10%,然后随温度降低。通过将实验数据与理论预测值进行比较,我们利用分子场理论找到了所有材料的合理定性一致性。然而,奇数二聚体显示出比理论模型更高的值,这是归因于PRS分析中分子柔性和双轴性被忽略的因素。

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