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Sensing Characteristics of Side-Polished Fiber Based on the Alterations in Helical Structure of Thermo-Sensitive Cholesteric Liquid Crystals

机译:基于热敏胆甾醇液晶螺旋结构改变的副抛光纤维的传感特性

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摘要

Cholesteric liquid crystals (CLCs) are sensitive to environmental temperature changes, and have been employed as a specific intermediary for biosensors. Considering the temperature-dependent structural changes of CLCs, this study aimed to determine the sensing properties of side-polished fibers (SPFs) after coating with CLCs. The experimental results demonstrated that, with regard to the transmitted spectrum, the loss peak of CLC-coated SPFs exhibited a positive linear relationship with temperature changes over a range of 20 to 50 °C. The linear correlation coefficient achieved 97.8% when the temperature increased by 10 °C, and the loss peak drifted by 12.72 nm. The reflectance spectrum of CLCs coated on the polished surface were obtained using optical fiber sensors. The feasibility of measuring the helical structure of CLCs was further verified using SPF transmission spectroscopy. The findings indicated that the transmitted spectrum of SPFs could be adopted to characterize the helical structure of CLCs, which lays a solid foundation for further study on SPF-based biosensors.
机译:胆甾型液晶(CLCS)对环境温度变化敏感,并被用作生物传感器的特定中间体。考虑到CLCS的温度依赖性结构变化,本研究旨在在用CLC涂覆后确定侧抛光纤维(SPFS)的感测性能。实验结果表明,关于透射光谱,CLC涂覆的SPF的损耗峰表现出与20至50℃的温度变化的正线性关系。当温度升高10℃时,线性相关系数达到97.8%,损耗峰漂移12.72nm。使用光纤传感器获得涂覆在抛光表面上的CLC的反射光谱。使用SPF透射光谱进一步验证测量CLCS螺旋结构的可行性。结果表明,可以采用SPF的透射光谱来表征CLC的螺旋结构,为进一步研究SPF的生物传感器为进一步研究产物。

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