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Eutectic liquid crystal mixture E7 in nanoporous alumina. Effects of confinement on the thermal and concentration fluctuations

机译:纳米多孔氧化铝中的共晶液晶混合物E7。限制对热浓度波动的影响

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摘要

The eutectic mixture of liquid crystals E7 is studied in confinement by means of thermal and dielectric measurements. The uniform 1-D confinement provided by self-ordered nanoporous alumina leads to a decrease in the nematic to isotropic transition temperature due to interaction with the pore surface, e.g. surface anchoring. The prevalence of certain dynamic modes of relaxation is found to depend on the surface properties of the confining pores. The dynamics ( i.e. , relaxation times) were found to accelerate with increasing confinement, resulting in a decreasing glass temperature, independent of surface treatment. From the pre- and meta-transitional dependence of the dielectric permittivity on temperature we are able to deduce a weakening effect of confinement on the nematic to isotropic (N/I) transition which allows the determination of a critical pore diameter (in the range from 11 nm to 23 nm) below which the transition becomes continuous. Comparison of the N/I transition of E7 to those of its constituent liquid crystals reveals a significantly weaker transition occurring over a widened temperature range. This suggest the importance of concentration fluctuations in rounding first order phase transitions that are triggered by the different length scales and ranges of nematic stability in E7. The results have an impact beyond the present case and for several soft materials ( e.g. oligomers used as OLEDs, polymers, colloids) as it demonstrates the importance of concentration fluctuations in addition to thermal fluctuation on the strength of phase transitions.
机译:通过热和电介质测量来利用液晶E7的共晶混合物。由自动纳米多孔氧化铝提供的均匀1-D限制导致向尖端与孔表面的相互作用引起的向上同向调转变温度的减少,例如,例如,例如与孔表面相互作用。表面锚定。发现某些动态松弛模式的患病率取决于限制孔的表面性质。发现动力学(即,放松时间)加速随着限制的增加,导致玻璃温度降低,与表面处理无关。从介电介电常数对温度的预先和介电介电常数的依赖性,我们能够推断诱导对列到各向同性(N / I)转变的弱化效果,其允许测定临界孔径(从下面的转变变为连续11nm至23nm。 E7的N / I转变对其组成液晶的那些的比较显示出在加宽温度范围内发生显着较弱的过渡。这表明浓度波动在舍入的第一阶相转变中的重要性,其由E7中的不同长度尺度和向列稳定性的范围触发。结果具有超出本案例的影响,并且对于几种软质材料(例如,用作OLED的低聚物,聚合物,胶体),因为它除了对相变强度的热波动之外,还表明浓度波动的重要性。

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