Liu Sunqian, Marinčič Matevž, Nys Inge, Ravnik Miha, Neyts Kristiaan
Liquid Crystals and Photonics Group, Department of Electronics and Information Systems, Ghent University, 9052 Ghent, Belgium.
Faculty of Mathematics and Physics, University of Ljubljana, 1000 Ljubljana, Slovenia.
ACS Appl Mater Interfaces. 2024 Dec 11;16(49):68579-68589. doi: 10.1021/acsami.4c14574. Epub 2024 Dec 2.
Blue phase liquid crystals (BPLCs) are chiral self-assembled three-dimensional (3D) periodic structures which have attracted a lot of attention due to their electro-optical properties, relevant for tunable soft photonic crystals and fast-response displays. However, to realize this application potential, controlling the BPLC alignment at the surfaces is crucial, and one way to obtain the desired alignment is by photoalignment patterning. In this article, monodomain BPLC samples with controlled orientation are achieved by imposing different alignment patterns that have a periodicity that is compatible with the size of the BPLC unit cell, using two-step photoalignment with polarized ultraviolet (UV) light. Experiments are complemented by numerical simulations to design striped surface alignment patterns, which induce specific director orientations on the boundary layer of the confined BPLC. By designing the patterns and matching the periodicity to a specific BP material, we can control the orientation of the blue phase unit cell lattice in the sample, including the azimuthal angle. The orientation is measured by the Kossel patterns and matches the optimal configuration predicted by stability analysis using Landau-de Gennes free energy modeling. The detailed structure and reduced symmetry of the BP near the surface are investigated, and the corresponding (meta)stable structures are demonstrated. Overall, we demonstrate that two-step photoalignment patterning is a reliable, relatively simple, and reconfigurable method to achieve a high-quality monodomain BP with controlled and tunable crystalline orientation.
蓝相液晶(BPLCs)是手性自组装三维(3D)周期性结构,因其电光特性而备受关注,这与可调谐软光子晶体和快速响应显示器相关。然而,要实现这种应用潜力,控制BPLC在表面的取向至关重要,而获得所需取向的一种方法是通过光取向图案化。在本文中,通过使用偏振紫外(UV)光进行两步光取向,施加具有与BPLC晶胞尺寸兼容的周期性的不同取向图案,实现了具有可控取向的单畴BPLC样品。通过数值模拟对实验进行补充,以设计条纹状表面取向图案,这些图案在受限BPLC的边界层上诱导特定的指向矢取向。通过设计图案并将周期性与特定的蓝相材料匹配,我们可以控制样品中蓝相晶胞晶格的取向,包括方位角。通过科塞尔图案测量取向,并与使用朗道 - 德热纳自由能建模的稳定性分析预测的最佳构型相匹配。研究了表面附近蓝相的详细结构和降低的对称性,并展示了相应的(亚)稳定结构。总体而言,我们证明两步光取向图案化是一种可靠、相对简单且可重构的方法,可实现具有可控和可调谐晶体取向的高质量单畴蓝相。