Yu Jeong-Seon, Lee Jae Hoon, Lee Jun-Yong, Kim Jong-Hyun
Institute of Quantum Systems, Chungnam National University, Daejeon, 34134, Korea.
Department of Physics, Chungnam National University, Daejeon, 34134, Korea.
Soft Matter. 2023 Mar 29;19(13):2446-2453. doi: 10.1039/d3sm00123g.
The orientation characteristics of FNLC-919, a new material with a ferroelectric nematic phase at room temperature, were investigated. Its alignment characteristics varied greatly depending on the relative rubbing direction on both substrates of a liquid crystal cell. In a cell where the two substrates were rubbed in the same direction, they were arranged homogeneously along the rubbing direction without domains or defects in the ferroelectric nematic phase. In a cell where the two substrates were rubbed in the anti-parallel direction, the two domains were twisted in the opposite direction. We quantitatively obtained the twisted direction and angle by matching the experimental data and calculation results using Jones matrix calculations. From the electro-optical experiment, it was confirmed that the polarization direction was opposite to the rubbing direction. In addition, the wavelength and temperature dependence of birefringence was measured for FNLC-919. In a cell where the rubbing direction between two substrates was 90°, two domains of opposite directions were observed in the nematic phase. When it becomes a ferroelectric nematic phase on cooling, the twist is determined to be only in one direction. The twist direction and angle were quantitatively obtained in the nematic and ferroelectric nematic phases. It was twisted more in the ferroelectric nematic phase than in the nematic phase.
研究了室温下具有铁电向列相的新型材料FNLC-919的取向特性。其排列特性根据液晶盒两个基板上的相对摩擦方向而有很大差异。在两个基板沿相同方向摩擦的盒中,它们在铁电向列相中沿摩擦方向均匀排列,没有畴或缺陷。在两个基板沿反平行方向摩擦的盒中,两个畴沿相反方向扭曲。我们通过使用琼斯矩阵计算将实验数据与计算结果进行匹配,定量地获得了扭曲方向和角度。从电光实验中证实,偏振方向与摩擦方向相反。此外,还测量了FNLC-919的双折射的波长和温度依赖性。在两个基板之间的摩擦方向为90°的盒中,在向列相中观察到两个相反方向的畴。当冷却变为铁电向列相时,确定扭曲仅在一个方向上。在向列相和铁电向列相中定量地获得了扭曲方向和角度。它在铁电向列相中比在向列相中扭曲得更多。