首页> 外文会议>Emerging Liquid Crystal Technologies II; Proceedings of SPIE-The International Society for Optical Engineering; vol.6487 >Lyotropic Chromonic Liquid Crystals as Materials for Optical and Biosensing Applications
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Lyotropic Chromonic Liquid Crystals as Materials for Optical and Biosensing Applications

机译:溶致变色液晶作为光学和生物传感应用的材料

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Lyotropic chromonic liquid crystals (LCLCs) are formed by molecules with rigid polyaromatic cores and ionic groups at the periphery that form aggregates while in water. Most of the LCLCs are not toxic to the biological cells and can be used as an amplifying medium in real-time biosensors. The detector is based on the principle that the immune aggregates growing in the LCLC bulk trigger the director distortions. Self-assembly of LCLC molecules into oriented structures allows one to use them in various structured films. For example, layer-by-layer electrostatic deposition produces monomolecular layers and stacks of layers of LCLC with long-range in-plane orientational order which sets them apart from the standard Langmuir-Blodgett films. We demonstrate that divalent and multivalent salts as well as acidic and basic materials that alter pH of the LCLC water solutions, are drastically modifying the phase diagrams of LCLC, from shifting the phase transition temperatures by tens of degrees, to causing condensation of the LCLC aggregates into more compact structures, such as birefringent bundles or formation of a columnar hexagonal phase from the nematic phase.
机译:溶致发色液晶(LCLC)由具有刚性多芳族核和在外围形成离子聚集体的离子基团形成,这些分子在水中时会形成聚集体。大多数LCLC对生物细胞无毒,可以在实时生物传感器中用作放大介质。检测器基于以下原理:在LCLC体中生长的免疫聚集体会触发指向矢扭曲。 LCLC分子的自组装成定向结构,使人们可以在各种结构化薄膜中使用它们。例如,逐层静电沉积产生LCLC的单分子层和层堆叠,并具有长距离的面内取向顺序,这使它们与标准Langmuir-Blodgett膜区分开。我们证明,改变LCLC水溶液pH的二价和多价盐以及酸性和碱性材料正在从根本上改变LCLC的相图,从将相变温度移动数十度到导致LCLC聚集体冷凝形成更紧凑的结构,例如双折射束或由向列相形成柱状六方相。

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