Cherfi Y, Hemine J, Douali R, Beldjoudi N, Ismaili M, Leblond J M, Legrand C, Daoudi A
Université des Sciences et de la Technologie Houari Boumediene, Alger, Algerie.
Eur Phys J E Soft Matter. 2010 Dec;33(4):335-42. doi: 10.1140/epje/i2010-10679-x. Epub 2010 Nov 25.
Linear and non-linear dielectric measurements were carried out on a ferroelectric liquid crystal stabilized by an anisotropic polymer network. The polymerization process was achieved at room temperature. It was performed from an achiral monomer in the ferroelectric chiral smectic C phase, exhibiting a very short helical pitch and a large polarization. The linear and non-linear dielectric spectroscopy were also completed by textural morphology as well as structural and ferroelectric characterizations. All these measurements were carried out on a pure ferroelectric liquid crystal material and on composite films containing two polymer concentrations. The increase of the polymer network density leads to a decrease of the dielectric strength determined in the linear and non-linear dielectric spectroscopy. The complementarity between the linear and non-linear dielectric measurements and their confrontation with a theoretical model allowed the simultaneous determination of some physical parameters such as macroscopic polarization, rotational viscosity and twist elastic energy. We also discuss the effect of the polymer network density on the obtained physical parameters.
对由各向异性聚合物网络稳定的铁电液晶进行了线性和非线性介电测量。聚合过程在室温下完成。它由铁电手性近晶C相中的非手性单体进行,呈现出非常短的螺旋节距和大极化。线性和非线性介电谱还通过织构形态以及结构和铁电表征来完成。所有这些测量均在纯铁电液晶材料以及包含两种聚合物浓度的复合膜上进行。聚合物网络密度的增加导致线性和非线性介电谱中确定的介电强度降低。线性和非线性介电测量之间的互补性以及它们与理论模型的对比使得能够同时确定一些物理参数,如宏观极化、旋转粘度和扭曲弹性能量。我们还讨论了聚合物网络密度对所获得物理参数的影响。