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E-coli Identification using Kretschmann-based Ag/GO Nanocomposites Plasmonic Sensor

机译:基于Kretschmann的AG / GO纳米复合材料等离子体传感器的E-COLI识别

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A low cost and highly efficient surface plasmon resonance (SPR) sensor for e-coli detection was developed by employing Kretschmann prism coupling technique. Silver thin film and graphene oxide were deposited on top of hypotenuse side of prism surface to excite surface plasmon polaritons (SPP). Their thicknesses were modulated between 43nm to 49nm and 1nm to 15nm respectively. The excitations of SPP were investigated by monitoring its minimum reflectance, Q-factor values and amount of angle shifting. Hybrid nanolayers of 1nm GO which was coated on top of 43nm-45nm silver thin film exhibited excellent sensitivity resulting maximum angle shifting about 0.30°. As thicknesses of silver exceeded 45nm, the generation of SPR signals were less significant which led to the degradation of sensor's sensing performance. In conclusion, the sensitivity of SPR sensors for the identification of e-coli can be optimized by introduced nanocomposites silver-GO with total thicknesses between 44nm and 46nm. Optimum sensitivity can only be achieved by employing maximum thickness of 1nm GO.
机译:通过采用Kretschmann棱镜耦合技术开发了用于E-Coli检测的低成本和高效的表面等离子体谐振(SPR)传感器。将银薄膜和石墨烯氧化物沉积在棱镜表面的斜边侧,以激发表面等离子体极性(SPP)。它们的厚度分别在43nm至49nm和1nm至15nm之间调节。通过监测其最小反射率,Q系数值和角度移位量来研究SPP的激发。涂覆在43nm-45nm银薄膜顶部的1nm的杂化纳米体表现出优异的灵敏度,得到最大角度换档约0.30°。随着银坯的厚度超过45nm,SPR信号的产生不太显着,从而导致传感器的感测性能的降低。总之,通过引入的纳米复合材料银 - 持续44nm和46nm之间的总厚度,可以优化用于鉴定E-Coli的SPR传感器的敏感性。只能通过采用最大厚度为1nm的最大厚度来实现最佳灵敏度。

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