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Dual Refractive Index and Viscosity Sensing Using Polymeric Nanofibers Optical Structures

机译:使用聚合物纳米纤维光学结构的双折射率和粘度感测

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Porous materials have demonstrated to be ideal candidates for the creation of optical sensors with very high sensitivities. This is due both to the possibility of infiltrating the target substances into them and to their notable surface-to-volume ratio that provides a larger biosensing area. Among porous structures, polymeric nanofibers (NFs) layers fabricated by electrospinning have emerged as a very promising alternative for the creation of low-cost and easy-to-produce high performance optical sensors, for example, based on Fabry-Perot (FP) interferometers. However, the sensing performance of these polymeric NFs sensors is limited by the low refractive index contrast between the NFs porous structure and the target medium when performing in-liquid sensing experiments, which determines a very low amplitude of the FP interference fringes appearing in the spectrum. This problem has been solved with the deposition of a thin metal layer (similar to 3 nm) over the NFs sensing layer. We have successfully used these metal-coated FP NFs sensors to perform several real-time and in-flow refractive index sensing experiments. From these sensing experiments, we have also determined that the sponge-like structure of the NFs layer suffers an expansion/compression process that is dependent of the viscosity of the analyzed sample, what thus gives the possibility to perform a simultaneous dual sensing of refractive index and viscosity of a fluid.
机译:多孔材料已经证明是用于创建具有非常高的敏感性光学传感器的理想候选者。这是由于渗透到它们中的靶物质以及它们提供较大的生物沉积区域的显着表面到体积比的可能性。在多孔结构中,通过静电纺塑制造的聚合物纳米纤维(NFS)层作为产生低成本和易于产生的高性能光学传感器的非常有前途的替代方案,例如,基于法布里 - 珀罗(FP)干涉仪。然而,这些聚合物NFS传感器的感测性能受到在执行内液感测实验时NFS多孔结构和目标介质之间的低折射率对比度的限制,这决定了频谱中出现的FP干扰条纹的非常低幅度。通过在NFS感测层上沉积薄金属层(类似于3nm),已经解决了该问题。我们已成功使用这些金属涂层的FP NFS传感器来执行若干实时和流量折射率传感实验。从这些感测实验中,我们还确定了NFS层的海绵状结构遭受膨胀/压缩过程,其取决于分析的样品的粘度,因此可以提出执行折射率的同时双重感测的可能性和流体的粘度。

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