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向列相液晶盒中表面诱导失配实现的电可切换多稳态拓扑态

Electrically Switchable Multi-Stable Topological States Enabled by Surface-Induced Frustration in Nematic Liquid Crystal Cells.

作者信息

Neirynck Jelto, Hsiao Yu-Tung, Stebryte Migle, Nys Inge

机构信息

Liquid Crystals and Photonics Group, Department of Electronics and Information Systems, Ghent University, Technologiepark-Zwijnaarde 126, Ghent, 9052, Belgium.

出版信息

Adv Mater. 2025 Mar;37(12):e2414675. doi: 10.1002/adma.202414675. Epub 2025 Jan 10.

Abstract

In liquid crystal (LC) cells, the surface patterning directs the self-assembly of the uniaxial building blocks in the bulk, enabling the design of stimuli-response optical devices with various functionalities. The combination of different anchoring patterns at both substrates can lead to surface induced frustration, preventing a purely planar and defect-free configuration. In cells with crossed assembly of rotating anchoring patterns, elastic deformations allow to obtain a defect-free bulk configuration, but an electrical stimulus can induce disclination lines. The disclination network is preserved without applied voltage. Depending on the electric field treatment and geometrical parameters, different multi-stable states with and without disclinations are obtained. This is demonstrated with the help of dual-frequency LCs, for which the frequency dependent dielectric properties allow repeatable switching between multi-stable states. Topological protection and the associated energy barrier between different states explains the observed metastability. The obtained configurations are retrieved with Q-tensor simulations and the validity is confirmed by matching optical simulations with experimentally obtained microscopy images. The realized multi-stable topological states interact differently with light, resulting in distinct optical properties. Optimization allows to switch between a highly transparent state and an opaque state, opening up opportunities for smart windows with low energy consumption.

摘要

在液晶(LC)盒中,表面图案化引导单轴结构单元在主体中自组装,从而能够设计具有各种功能的刺激响应光学器件。两个基板上不同锚定图案的组合会导致表面诱导的失配,从而阻止形成纯粹平面且无缺陷的构型。在具有旋转锚定图案交叉组装的盒中,弹性变形可实现无缺陷的主体构型,但电刺激会诱导出位错线。在没有施加电压的情况下,位错网络得以保留。根据电场处理和几何参数的不同,可以获得有无位错的不同多稳态。借助双频液晶对此进行了演示,其频率相关的介电特性允许在多稳态之间进行可重复切换。拓扑保护以及不同状态之间相关的能垒解释了所观察到的亚稳态。通过Q张量模拟获得所得到的构型,并通过将光学模拟与实验获得的显微镜图像进行匹配来确认其有效性。所实现的多稳态拓扑状态与光的相互作用方式不同,从而产生不同的光学特性。通过优化可以在高透明状态和不透明状态之间切换,为低能耗智能窗户开辟了机会。

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