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The visual detection of anesthetics in fish based on an inverse opal photonic crystal sensor

机译:基于反蛋白石光子晶体传感器的鱼中麻醉剂的视觉检测

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摘要

A novel smart sensor for the rapid and label-free detection of benzocaine has been developed based on the combination of photonic crystal (PC) and molecular imprinting polymer (MIP) techniques. A molecularly imprinted photonic crystal (MIPC) hydrogel film was prepared via a non-covalent, self-assembly approach with a PC mould. With a highly ordered inverse opal structure, the resulting benzocaine MIPC exhibited high sensitivity, smart specificity, quick response times and good regeneration abilities. It can give rise to a readable optical signal and color change upon binding with benzocaine, with a detection limit of 16.5 μg mL ~(?1) . The sensor has been successfully used to visually estimate benzocaine concentrations in fish samples. In comparison with HPLC, the developed MIPC sensor has shown satisfactory accuracy in terms of results. It has great potential for on-site screening and the visual detection of trace benzocaine in real samples.
机译:基于光子晶体(PC)和分子印迹聚合物(MIP)技术的结合,已开发出一种新颖的智能传感器,用于快速,无标记地检测苯佐卡因。分子印迹光子晶体(MIPC)水凝胶膜是通过非共价自组装方法与PC模具制备的。具有高度有序的反蛋白石结构,所得苯佐卡因MIPC表现出高灵敏度,灵敏的特异性,快速的响应时间和良好的再生能力。与苯佐卡因结合后,可引起可读的光信号和颜色变化,检测极限为16.5μgmL〜(?1)。该传感器已成功用于肉眼评估鱼类样品中苯佐卡因的浓度。与HPLC相比,开发的MIPC传感器在结果方面显示出令人满意的准确性。它具有现场筛查和视觉检测实际样品中痕量苯佐卡因的巨大潜力。

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