Kim Young-Ki, Senyuk Bohdan, Shin Sung-Tae, Kohlmeier Alexandra, Mehl Georg H, Lavrentovich Oleg D
Liquid Crystal Institute and Chemical Physics Interdisciplinary Program, Kent, OH 44242, USA.
Soft Matter. 2014 Jan 21;10(3):500-9. doi: 10.1039/c3sm52249k.
We perform optical, surface anchoring, and textural studies of an organo-siloxane "tetrapode" material in the broad temperature range of the nematic phase. The optical, structural, and topological features are compatible with the uniaxial nematic order rather than with the biaxial nematic order, in the entire nematic temperature range -25 °C < T < 46 °C studied. For homeotropic alignment, the material experiences surface anchoring transition, but the director can be realigned into an optically uniaxial texture by applying a sufficiently strong electric field. The topological features of textures in cylindrical capillaries, in spherical droplets and around colloidal inclusions are consistent with the uniaxial character of the long-range nematic order. In particular, we observe isolated surface point defects - boojums and bulk point defects - hedgehogs that can exist only in the uniaxial nematic liquid crystal.
我们在向列相的宽温度范围内对一种有机硅氧烷“四脚体”材料进行了光学、表面锚定和织构研究。在所研究的整个向列温度范围-25°C < T < 46°C内,光学、结构和拓扑特征与单轴向列序兼容,而非与双轴向列序兼容。对于垂直排列,该材料经历表面锚定转变,但通过施加足够强的电场,指向矢可重新排列成光学单轴织构。圆柱形毛细管、球形液滴和胶体包裹体周围织构的拓扑特征与长程向列序的单轴特性一致。特别是,我们观察到仅存在于单轴向列液晶中的孤立表面点缺陷——布居姆和体点缺陷——刺猬缺陷。