Senyuk B, Wonderly H, Mathews M, Li Q, Shiyanovskii S V, Lavrentovich O D
Liquid Crystal Institute and Chemical Physics Interdisciplinary Program, Kent State University, Kent, Ohio 44242, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2010 Oct;82(4 Pt 1):041711. doi: 10.1103/PhysRevE.82.041711. Epub 2010 Oct 26.
We study optical, structural, and surface anchoring properties of thermotropic nematic bent-core material A131. The focus is on the features associated with orientational order as the material has been reported to exhibit not only the usual uniaxial nematic but also the biaxial nematic phase. We demonstrate that A131 experiences a surface anchoring transition from a perpendicular to tilted alignment when the temperature decreases. The features of the tilted state are consistent with surface-induced birefringence associated with smectic layering near the surface and a molecular tilt that changes along the normal to the substrates. The surface-induced birefringence is reduced to zero by a modest electric field that establishes a uniform uniaxial nematic state. Both refractive and absorptive optical properties of A131 are consistent with the uniaxial order. We found no evidence of the "polycrystalline" biaxial behavior in the cells placed in crossed electric and magnetic fields. We observe stable topological point defects (boojums and hedgehogs) and nonsingular "escaped" disclinations pertinent only to the uniaxial order. Finally, freely suspended films of A131 show uniaxial nematic and smectic textures; a decrease in the film thickness expands the temperature range of stability of smectic textures, supporting the idea of surface-induced smectic layering. Our conclusion is that A131 features only a uniaxial nematic phase and that the apparent biaxiality is caused by subtle surface effects rather than by the bulk biaxial phase.
我们研究了热致向列型弯曲核材料A131的光学、结构和表面锚定特性。重点关注与取向有序相关的特征,因为据报道该材料不仅呈现常见的单轴向列相,还呈现双轴向列相。我们证明,当温度降低时,A131经历从垂直取向到倾斜取向的表面锚定转变。倾斜态的特征与表面诱导双折射一致,这种双折射与表面附近的近晶层状结构以及沿基板法线方向变化的分子倾斜有关。适度的电场可使表面诱导双折射降至零,从而建立均匀的单轴向列态。A131的折射和吸收光学特性均与单轴有序一致。我们在置于交叉电场和磁场中的液晶盒中未发现“多晶”双轴行为的证据。我们观察到仅与单轴有序相关的稳定拓扑点缺陷(布儒姆和刺猬)以及非奇异的“逃逸”位错。最后,自由悬浮的A131薄膜呈现单轴向列相和近晶织构;薄膜厚度的减小扩大了近晶织构的稳定温度范围,支持了表面诱导近晶层状结构的观点。我们的结论是,A131仅具有单轴向列相,其明显的双轴性是由微妙的表面效应而非体相双轴相引起的。