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Improving Liquid-Crystal-Based Biosensing in Aqueous Phases

机译:改善液相中基于液晶的生物传感

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摘要

Liquid crystal (LC)-based biological sensors permit the study of aqueous biological samples without the need for the labeling of biological species with fluorescent dyes (which can be laborious and change the properties of the biological sample under study). To date, studies of LC-based biosensors have explored only a narrow range of the liquid crystal/ alignment layer combinations essential to their operation. Here, we report a study of the role of LC elastic constants and the surface anchoring energy in determining the sensitivity of LC-based biosensors. By investigating a mixture of rod-shape and bent-shape mesogens, and three different alignment layers, we were able to widen the useful detection range of a LC-based sensor by providing an almost-linear mapping of effective birefringence with anionic surfactant concentrations between 0.05 mM and 1 mM (model target analyte). These studies pave the way for optimization of LC-based biosensors and reveal the importance of the choice of both the LC material and the alignment layer in determining sensor properties.
机译:基于液晶(LC)的生物传感器允许研究水性生物样品,而无需使用荧光染料标记生物物种(这可能很费力并且会改变所研究生物样品的特性)。迄今为止,基于LC的生物传感器的研究仅探索了对其操作必不可少的一小部分液晶/取向层组合。在这里,我们报告有关LC弹性常数和表面锚定能在确定基于LC的生物传感器的敏感性中的作用的研究。通过研究棒状和弯曲状液晶元的混合物以及三个不同的取向层,我们能够通过提供有效双折射与阴离子表面活性剂浓度之间的近似线性映射来拓宽基于LC的传感器的有用检测范围。 0.05 mM和1 mM(模型目标分析物)。这些研究为优化基于LC的生物传感器铺平了道路,并揭示了选择LC材料和取向层对确定传感器特性的重要性。

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