Gunyakov V A, Parshin A M, Shabanov V F
L.V. Kirensky Institute of Physics, Russian Academy of Sciences, 660036, Krasnoyarsk, Russia.
Eur Phys J E Soft Matter. 2006 Aug;20(4):467-73. doi: 10.1140/epje/i2006-10037-9. Epub 2006 Sep 5.
Specific features of the anisotropic interaction between a nematic mixture and a polar surface of a ferroelectric triglycine sulfate crystal have been studied over a wide temperature range including the substrate's Curie point T(c). The mixture was composed of two nematic liquid crystals, 60% of p-methoxybenzylidene-p-n-butylaniline (MBBA) and 40% of p-ethoxybenzylidene-p-n-butylaniline (EBBA), and doped with a small amount of a dichroic dye. The temperature dependence of the polarized components of optical density D(j) of the dye absorption band for the nematic and isotropic phases of the MBBA+EBBA mixture has been obtained using polarization optic techniques. The temperature-induced structural changes in the nematic layer near T(c) were found to be related to the changes in the orientational part of the tensor order parameter Q(ik). The experimental data have been interpreted using the model, in which the dispersive van der Waals forces of the substrate stabilize the planar orientation of the nematic in the bulk competing with the short-range anchoring forces in the vicinity of T(c). At the same time, the anisotropic part of the surface energy has two terms with the orthogonal easy axes. The nature of the surface electric field and its effect on the director alignment at the interface have been clarified. Taking into account the known relation between anchoring strength and the nematic order parameter, the effective anchoring energy w(eff) for the studied system has been determined as a function of temperature.
在包括衬底居里点(T(c))的宽温度范围内,研究了向列相混合物与硫酸三甘氨酸铁电体晶体极性表面之间各向异性相互作用的特定特征。该混合物由两种向列相液晶组成,即60%的对甲氧基苄叉对正丁基苯胺(MBBA)和40%的对乙氧基苄叉对正丁基苯胺(EBBA),并掺杂了少量二色性染料。利用偏振光学技术获得了MBBA + EBBA混合物向列相和各向同性相染料吸收带光密度(D(j))偏振分量的温度依赖性。发现在(T(c))附近向列层中温度诱导的结构变化与张量序参量(Q(ik))取向部分的变化有关。实验数据已用该模型进行了解释,在该模型中,衬底的色散范德华力稳定了本体中向列相的平面取向,与(T(c))附近的短程锚定力相互竞争。同时,表面能的各向异性部分有两个具有正交易轴的项。阐明了表面电场的性质及其对界面处指向矢排列的影响。考虑到锚定强度与向列相序参量之间的已知关系,确定了所研究系统的有效锚定能(w(eff))随温度的变化函数。