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Electro-optical investigations of liquid crystalline mixtures.

机译:液晶混合物的电光研究。

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摘要

Doping a liquid crystal with an appropriate substance, which may or may not have mesogenic properties, can induce substantial changes in its physical properties. It may change the symmetry of the phase, it may induce new phases, and it may drastically change particular physical properties while leaving others unchanged or slightly altered. In consequence, doped liquid crystals and liquid crystalline mixtures are of great importance in industry. In this dissertation the results of several investigations of such systems are reported.; The bend elasticity of a calamitic nematogen (4O.8), doped with a bent-core mesogen (P7-PIMB) was studied. Different electro-optical techniques, including the Frederiks transition technique, were used to monitor the bend elasticity of a set of doped samples as a function of the dopant concentration. The presence of bent-core compound in the sample monotonically reduced the bend elasticity. For the highest concentration sample (10.8% dopant by weight) the bend elastic constant decreased by 40%.; In another investigation the influence of a bent-core dopant (same compound) on the nematic-smectic A pretransitional behavior of a calamitic liquid crystal (8OCB) was studied. The marked reduction of bend elasticity for a small amount of dopant holds true for the new mixtures in the temperature range close to nematic-smectic A phase transition temperature, a region that was not explored in the previous study. In addition, a substantial change (25%) in the smectic bare correlation length for a small concentration of dopant (6% by weight) was found.; In the last chapter the results of an investigation of the stability of antiferroelectric phase in enantiomeric mixtures of an antiferroelectric liquid crystal are presented. Although the molecular origin of anticlinic structure, which results in antiferroelectricity when the mesogens are chiral, is not very well known, we may nevertheless introduce a phenomenological parameter, which in part may be due to the local dipole-dipole interactions. A set of experiments was performed for five different enantiomeric mixtures, and the interlayer interaction was deduced for each mixture. The interlayer interaction was found to decrease on decreasing the enantiomeric excess. A mean field theory was introduced to explain the observed behavior and it was found to be a viable approach to understanding the problem.
机译:用适当的物质(可能具有或不具有介晶性质)掺杂液晶会导致其物理性质发生实质性变化。它可能会改变相的对称性,可能会引发新的相,并且可能会显着改变特定的物理特性,而其他特性则保持不变或略有改变。因此,掺杂的液晶和液晶混合物在工业中非常重要。本文报道了对这种系统的若干研究结果。研究了掺有弯曲核介晶元(P7-PIMB)的卡拉米特线虫(4O.8)的弯曲弹性。不同的电光技术,包括腓特烈过渡技术,被用来监测一组掺杂样品的弯曲弹性随掺杂浓度的变化。样品中弯曲核化合物的存在单调降低了弯曲弹性。对于最高浓度的样品(按重量计10.8%的掺杂剂),弯曲弹性常数降低40%。在另一项研究中,研究了弯曲核掺杂剂(相同的化合物)对向列型近晶相的影响。研究了cal状液晶(8OCB)的过渡前行为。少量掺杂剂的弯曲弹性显着降低,在接近向列-近电A相转变温度的温度范围内,新混合物仍然适用,这是先前研究中未探讨的区域。另外,发现对于少量浓度的掺杂剂(6重量%),近晶裸相关长度的实质变化(25%)。在最后一章中,介绍了反铁电液晶对映体混合物中反铁电相稳定性的研究结果。尽管尚不十分了解抗斜晶结构的分子起源(当介晶为手性时会产生反铁电性),但我们仍可能引入一个现象学参数,这可能是由于局部偶极-偶极相互作用所致。对五种不同的对映体混合物进行了一组实验,并推导了每种混合物的层间相互作用。发现层间相互作用随着对映体过量的减少而降低。引入了均值场理论来解释观察到的行为,并且发现这是理解问题的可行方法。

著录项

  • 作者

    Daj, Mohammad Reza.;

  • 作者单位

    Case Western Reserve University.;

  • 授予单位 Case Western Reserve University.;
  • 学科 Physics Condensed Matter.; Physics Optics.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 p.3331
  • 总页数 142
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 O49;
  • 关键词

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