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Supramolecular control of liquid crystals by doping with halogen-bonding dyes

机译:掺杂卤素键合染料的超分子液晶控制

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Introducing photochromic or polymeric dopants into nematic liquid crystals is a well-established method to create stimuli-responsive photonic materials with the ability to “control light with light”. Herein, we demonstrate a new material design concept by showing that specific supramolecular interactions between the host liquid crystal and the guest dopants enhance the optical performance of the doped liquid crystals. By varying the type and strength of the dopant–host interaction, the phase-transition temperature, the order parameter of the guest molecules, and the diffraction signal in response to interference irradiation, can be accurately engineered. Our concept points out the potential of supramolecular interactions in liquid-crystal photonics, being valuable for optimizing the design of dye-doped functional liquid-crystalline systems.
机译:在向列型液晶中引入光致变色或聚合掺杂剂是一种成熟的方法,可以创建具有“光控光”能力的刺激响应性光子材料。在本文中,我们通过显示主体液晶和客体掺杂物之间的特定超分子相互作用增强了掺杂液晶的光学性能,展示了一种新的材料设计概念。通过改变掺杂剂与主体相互作用的类型和强度,可以精确地设计出相变温度,客体分子的有序参数以及响应于干扰辐射的衍射信号。我们的概念指出了液晶光子学中超分子相互作用的潜力,对于优化染料掺杂的功能液晶系统的设计非常有价值。

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