Emelyanenko AV, Osipov MA, Dunmur DA
Department of Physics, Moscow State University, Moscow 119899, Russia.
Phys Rev E Stat Phys Plasmas Fluids Relat Interdiscip Topics. 2000 Aug;62(2 Pt A):2340-52. doi: 10.1103/physreve.62.2340.
A molecular theory of the helical twisting in chiral liquid crystals is developed, which provides an explanation for the experimentally observed helical sense inversion induced by a change of concentration in binary mixtures of chiral and nonchiral nematic liquid crystals. The theory also describes the sense inversion induced by a change of temperature observed in some single component nematics. The theory present is based on a simple model of a chiral rigid molecule, composed of several equivalent nonchiral sites, which are arranged in the molecule to form a chiral configuration. The macroscopic helical pitch in the chiral nematic phase, twist elastic constant, and nematic order parameters are calculated using the same molecular model. It is shown that the helical sense inversion can be determined by a large biaxiality of chiral molecules. It is also demonstrated that the biaxiality is important in determining the variation of the helical pitch with temperature and concentration.
本文提出了一种手性液晶螺旋扭曲的分子理论,该理论解释了在手性和非手性向列型液晶二元混合物中,浓度变化引起的实验观测到的螺旋方向反转现象。该理论还描述了在一些单组分向列型液晶中观测到的温度变化引起的螺旋方向反转现象。目前的理论基于一个由几个等效非手性位点组成的手性刚性分子的简单模型,这些位点在分子中排列形成手性构型。使用相同的分子模型计算了手性向列相中的宏观螺旋螺距、扭曲弹性常数和向列序参数。结果表明,螺旋方向反转可由手性分子的大双轴性决定。还证明了双轴性在确定螺旋螺距随温度和浓度的变化方面很重要。