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Surface plasmon resonance based optical fiber sensor for atrazine detection using molecular imprinting technique

机译:基于表面等离子体共振的光纤传感器,用于利用分子印迹技术检测at去津

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摘要

We reported a successful effort for fabrication and characterization of surface plasmon resonance based fiber optic sensor to detect atrazine by molecular imprinted technique. The fabrication of sensing probe is done by coating a 40 nm thick silver film over the unclad core of an optical fiber. Further, an over layer of molecular imprinted (MIP) polymer having atrazine as template molecule has been coated over Ag coated region. Spectral interrogation method has been used for characterization of the probe. A red shift of 38 nm in resonance wavelength has been observed for atrazine concentration range of 0M-10~(-7) M. Sensitivity of the sensor has been found to be 17.34 nm/log M for atrazine concentration of 10~(-12) M. The sensor has lowest detection limit of 1.92 × 10~(-14)M and quantification limit of 7.61 × 10~(-14)M. Sensor has been found to be highly selective as well as highly sensitive due to a combined approach of molecular imprinting and surface plasmon resonance. Besides them, sensor has numerous advantages such as low cost, fast response, immune to electromagnetic interface and capability of online monitoring and remote sensing.
机译:我们报告了成功的努力,用于制造和表征基于表面等离振子共振的光纤传感器,以通过分子印迹技术检测at去津。传感探头的制造是通过在光纤的未包覆芯上覆盖40 nm厚的银膜来完成的。此外,已经将具有at去津作为模板分子的分子印迹(MIP)聚合物的顶层涂覆在Ag涂覆区域上。光谱询问法已经用于探针的表征。在0M-10〜(-7)M的at去津浓度范围内,观察到共振波长出现38 nm的红移。对于10〜(-12)的r去津浓度,传感器的灵敏度为17.34 nm / log M M.传感器的最低检测限为1.92×10〜(-14)M,定量限为7.61×10〜(-14)M。由于结合了分子印迹和表面等离振子共振的方法,已发现传感器具有很高的选择性和灵敏度。除此之外,传感器还具有许多优点,例如成本低,响应速度快,对电磁接口的免疫力强以及在线监视和遥感的能力。

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