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A change of surface plasmon resonance (SPR) characteristics due to fluids type variation as a basic study of biosensor

机译:由于流体型变异导致的表面等离子体共振(SPR)特性的变化作为生物传感器的基础研究

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SPR sensor is one of the detection devices based on surface plasmon resonance (SPR) phenomenon which can be used to identify biomolecular objects with high sensitivity and selectivity. This SPR phenomenon occurs at a certain angle, when incident light waves have superposition with evanescent waves and then reinforce each other on a metal-coated prism. In this study, the influence of fluid variation was analyzed using the SPR device as a basic study of SPR for biosensor application. The SPR device consists of semiconductor laser, prism, gold-plated chip sensor, stepping motor, photodiodes, and fluids variation as the detection objects. Fluids in this experiment are water, methanol, and ethanol. SPR angles were obtained of 61.418°, 63.070°, and 65.640°, for the objects of water, methanol, and ethanol, respectively. Meanwhile, the results of real-time detection produce different values of Response Unit (RU) due to different fluids. RU charts in real time reported the response unit of air, ethanol, methanol, and water of about 2,200, 1,100, 600, and 300, respectively. The results of three real-time measurements also show a stable RU value for each fluid. The SPR measurement records the change of the SPR curves due to different fluids because there are the refractive index differences of the fluids. The details of the SPR curve changes due to fluid objects are presented in this paper.
机译:SPR传感器是基于表面等离子体共振(SPR)现象的检测装置之一,其可用于鉴定具有高灵敏度和选择性的生物分子物体。当入射光波具有渐变波的叠加时,该SPR现象发生在一定角度,然后在金属涂覆的棱镜上彼此加强。在该研究中,使用SPR装置作为SPR用于生物传感器应用的基本研究,分析了流体变异的影响。 SPR器件由半导体激光器,棱镜,镀金芯片传感器,步进电机,光电二极管和流体变化组成,作为检测物体。该实验中的液体是水,甲醇和乙醇。 SPR角度分别获得61.418°,63.070°和65.640°,分别用于水,甲醇和乙醇的物体。同时,由于不同的流体,实时检测结果产生不同的响应单元(Ru)值。 Ru图实时报告了空气,乙醇,甲醇和水的响应单元,分别为2,200,1.100,600和300。三个实时测量结果也显示了每个流体的稳定RU值。 SPR测量记录由于不同的流体引起的SPR曲线的变化,因为存在折射率差异。本文提出了由于流体物体引起的SPR曲线的细节。

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