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Intensity-based plastic optical fiber sensor with molecularly imprinted polymer sensitive layer

机译:具有分子印迹聚合物敏感层的基于强度的塑料光纤传感器

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摘要

For the detection of chemical agents in different environments, the combination of plastic optical fibers (POFs) and molecularly imprinted polymers (MIPs) receptors has been tested as a way to obtain low cost, highly selective and sensitive optical chemical sensors based on plasmonic resonance. In this work, a novel type of optical chemical sensor able to detect the binding reactions occurring between the MIP and analyte has been designed, fabricated and applied for the selective detection of dibenzyl disulfide (DBDS) in transformer oil. This analyte is important in the control of transformer oil, since it is responsible for the corrosive properties of the oil. The new optical sensor platform is based on two plastic optical fibers that work as segmented waveguides coupled through a polymer molecularly imprinted for the analyte. The prepolymeric MIP solution was deposited by drop coating in a trench milled between the two fibers. The experimental results indicated that this new sensor can be useful for the determination of DBDS in transformer oil and it paves the way to a new approach in the optical fiber sensors for MIPs.
机译:为了检测不同环境中的化学试剂,已经测试了塑料光纤(POF)和分子印迹聚合物(MIPs)受体的组合,以此作为获取基于等离子共振的低成本,高选择性和灵敏的光学化学传感器的方法。在这项工作中,一种新型的光学化学传感器能够检测出MIP和分析物之间发生的结合反应,已被设计,制造并用于选择性检测变压器油中的二苄基二硫化物(DBDS)。这种分析物在控制变压器油中很重要,因为它负责油的腐蚀性。新的光学传感器平台基于两条塑料光纤,这些光纤作为分段波导,通过分子上为分析物压印的聚合物耦合。通过滴涂将预聚合MIP溶液沉积在两条纤维之间的沟槽中。实验结果表明,该新传感器可用于测定变压器油中的DBDS,为MIP光纤传感器的新方法铺平了道路。

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