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Large rewritable liquid crystal pretilt angle by <i>in situ</i> photoalignment of brilliant yellow films

Colin McGinty, Jakub Kołacz, Christopher M. Spillmann

2021Applied Physics Letters18 citationsDOIOpen Access PDF

Abstract

The ability to control the alignment of liquid crystals (LCs) is a challenge that is near-universal in LC research and applications. While several practical solutions exist for controlling the azimuthal (in-plane) alignment of LCs at an interface, control over the polar, or pretilt angle of the LC often requires a combination of materials or expensive and intricate processing. Here, we introduce a method for exerting control over large pretilt angles utilizing a two-step exposure method applied to Brilliant Yellow (BY) photoalignment films. We demonstrate that BY photoalignment films have the unique ability to enforce a large range of pretilt angles spanning homeotropic (90°) and planar (0°) anchoring conditions at the LC-substrate interface. The alignment is stable over time, rewritable, and patternable. Ultimately the control established here provides a powerful and low-cost means to align and take full advantage of the anisotropic and electro-optic properties of LCs for a wide range of applications.

Topics & Concepts

Homeotropic alignmentLiquid crystalMaterials sciencePlanarLiquid-crystal displayOptoelectronicsSubstrate (aquarium)OpticsNanotechnologyComputer sciencePhysicsOceanographyGeologyComputer graphics (images)Liquid Crystal Research AdvancementsAdvanced Materials and MechanicsPhotonic Crystals and Applications
Large rewritable liquid crystal pretilt angle by <i>in situ</i> photoalignment of brilliant yellow films | Litcius