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Development of a polymer/TiO_2 hybrid two-dimensional photonic crystal for highly sensitive fluorescence-based ion sensing applications

机译:用于高敏感的基于荧光离子传感应用的聚合物/ TiO_2混合二维光子晶体的研制

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In this study, we developed a polymer/TiO2 hybrid two-dimensional photonic crystal (2D-PhC) optical ion sensor that shows fluorescence enhancement based on the matching of the fluorescence wavelength and the confinable wavelength of a 2D-PhC. The polymer/TiO2 hybrid PhC was fabricated from a TiO2 pillar array, where the interspace was filled with a polymer containing a fluorescent dye. We developed a method of fabricating the TiO2 pillar array based on nanoimprint lithography using liquid phase deposition. The polymer/TiO2 hybrid PhC was fabricated on a poly(ethylene terephthalate) (PET) film. Thus, it can be easily cut because of its high flexibility and used for ion sensing applications.By using a fluorescent dye-containing polymer (poly(methyl methacrylate), PMMA) for the fabrication of the polymer/TiO2 hybrid PhC, the fluorescence intensity was drastically (25 times) increased. Subsequently, we used an ion-sensing polymer composed of plasticized poly(vinyl chloride) (PVC), a fluorescent dye, and ion recognition elements in the polymer/TiO2 hybrid PhC to enable its use as a highly sensitive ion sensor. As a result, the ion sensor based on the plasticized-PVC/TiO2 hybrid PhC exhibited four times greater fluorescence intensity compared with that based on the plasticized PVC without the PhC structure. (c) 2018 Elsevier B.V. All rights reserved.
机译:在该研究中,我们开发了一种聚合物/ TiO 2混合二维光子晶体(2D-PHC)光学离子传感器,其表示荧光波长的匹配和2D-PHC的可默认波长的匹配。聚合物/ TiO 2杂交PHC由TiO 2支柱阵列制成,其中间隙填充有含有荧光染料的聚合物。我们开发了一种基于纳米压印光刻制造TiO2支柱阵列的方法,使用液相沉积。在聚(乙二醇酯)(PET)膜上制造聚合物/ TiO 2杂交PHC。因此,由于其高柔韧性并且用于离子传感应用,可以容易地切割。使用含荧光染料的聚合物(Poly(甲基丙烯酸甲酯),PMMA),用于制造聚合物/ TiO2杂交PHC,荧光强度急剧(25次)增加。随后,我们使用由聚合物/ TiO2杂交PHC中的增塑多(氯乙烯)(PVC),荧光染料和离子识别元件组成的离子感测聚合物,以使其用作高敏感的离子传感器。结果,基于增塑-PVC / TiO2杂交PHC的离子传感器与基于塑化的PVC的荧光强度呈现了四倍较大的荧光强度,而没有PHC结构。 (c)2018年elestvier b.v.保留所有权利。

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