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Photonic crystal pH and metal cation sensors based on poly(vinyl alcohol) hydrogel

机译:基于聚乙烯醇水凝胶的光子晶体pH和金属阳离子传感器

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摘要

A facile strategy for the preparation of poly(vinyl alcohol) (PVA)/poly(acrylic acid) (PAA) photonic crystal materials with pH and metal cation responses is presented. A solvent-assisted freeze-thaw method is used to form a physically cross-linked PVA gelated crystalline colloidal array (GCCA) photonic crystal. The PVA hydrogel-based photonic crystal sensors were prepared by the introduction of environmentally sensitive components responding to pH and cations into the GCCA system. The photonic crystal pH sensor shows good durability, a large stopband shift, and good adjustability. Further functionalization of 8-hydroxyquinoline makes the interpenetrating networks respond to metal cation concentrations which could be determined from the diffraction color change or precisely monitored by diffraction wavelength shifting using a spectrophotometer. The PVA hydrogel-based photonic crystal sensors could be fabricated in any size and geometry as needed because there is no requirement for a thin sample to allow for penetration of UV light and its processing time is greatly reduced compared with the use of colloidal crystal templates, which has an important significance in the large-scale industrial production in the future.
机译:提出了一种制备具有pH和金属阳离子响应的聚乙烯醇(PVA)/聚丙烯酸(PAA)光子晶体材料的简便策略。使用溶剂辅助的冻融方法形成物理交联的PVA凝胶化晶体胶体阵列(GCCA)光子晶体。基于PVA水凝胶的光子晶体传感器是通过将对pH和阳离子有响应的环境敏感成分引入GCCA系统而制备的。光子晶体pH传感器显示出良好的耐用性,较大的阻带偏移和良好的可调节性。 8-羟基喹啉的进一步官能化使互穿网络能够响应于金属阳离子浓度,该浓度可通过衍射颜色变化确定或通过使用分光光度计的衍射波长偏移进行精确监控。基于PVA水凝胶的光子晶体传感器可以根据需要制造任何尺寸和几何形状,因为与使用胶体晶体模板相比,不需要薄样品就可以穿透UV光,并且其处理时间大大减少,这对未来的大规模工业生产具有重要意义。

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