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Surface Plasmon Resonance Based Highly Selective Fiber Optic Dopamine Sensor Fabricated Using Molecular Imprinted GNP/SnO2Nanocomposite

机译:基于表面等离子共振的分子印迹GNP / SnO 2 纳米复合材料制备的高选择性光纤多巴胺传感器

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摘要

Fabrication and characterization of a highly selective fiber optic surface plasmon resonance-based dopamine sensor using molecular imprinted graphene nanoaplatelets/tin oxide (SnO2) nanocomposite have been reported. The synthesis of sensing layer has been carried out using a series of optimizations and morphological studies. The effectiveness of the sensing layer over other possible probe designs has been proved by performing control experiments for a dopamine concentration range covering the suggested level of dopamine for human being. The limit of detection (LOD) of the sensor evaluated is 0.031 μM, which is lower than the LOD values of various dopamine sensors fabricated using different methods. The specificity of the sensor for dopamine has been confirmed by performing experiments using various interferands while the stability and reusability of the sensor probe have been checked by performing experiments repeatedly for a long period of time. Apart from high sensitivity, low LOD, and fast response, the sensor can be used for remote sensing and online monitoring of dopamine.
机译:使用分子印迹石墨烯纳米片/氧化锡(SnO n 2 n)纳米复合材料已被报道。感应层的合成已使用一系列优化和形态学研究进行了。通过对覆盖人的建议多巴胺水平的多巴胺浓度范围进行控制实验,已证明了传感层在其他可能的探针设计上的有效性。评估的传感器的检出限(LOD)为0.031μM,低于使用不同方法制造的各种多巴胺传感器的LOD值。多巴胺传感器的特异性已通过使用各种干扰素进行实验而得到证实,而传感器探针的稳定性和可重复使用性已通过长时间重复进行实验进行了检验。除了高灵敏度,低LOD和快速响应之外,该传感器还可用于多巴胺的遥感和在线监测。

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