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Novel high sensitivity SPR sensor based on surface plasmon resonance technology and IMI waveguide structure

机译:基于表面等离子体共振技术和IMI波导结构的新型高灵敏度SPR传感器

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Surface plasmon resonance (SPR) technology features convenient and rapid detection and high sensitivity; it does not need to mark samples and can maintain molecular activity. In this study, we investigate the symmetrical IMI waveguide structure of glass–silver film–ethanol and realize the high sensitivity of the SPR sensor in a low-temperature environment. We determined the relationship between the change in ethanol temperature and SPR resonance angle via the relationship between the refractive index of the liquid sensing material and the ambient temperature. Results show that the SPR sensor transmittance is as high as 95%. As the temperature increases, the resonance angle of the new Kretschmann configuration decreases, which is suitable for low-thermal sensing. Changing the proportion of the ethanol solution structure has no effect on the resonance phenomenon. The sensitivity of the sensor reaches ?0.408°/°C. The device can effectively improve the accuracy and anti-interference ability of the angle scanning SPR sensor and has good application and promotion value.
机译:表面等离子体共振(SPR)技术特性方便快速地检测和高灵敏度;它不需要标记样品并可维持分子活性。在该研究中,我们研究了玻璃银膜 - 乙醇的对称IMI波导结构,并实现了低温环境中SPR传感器的高灵敏度。我们通过液体传感材料折射率与环境温度之间的关系确定了乙醇温度和SPR共振角之间的关系。结果表明,SPR传感器透射率高达95%。随着温度的增加,新的KRETSCHMANN配置的共振角减少,这适于低热敏。改变乙醇溶液结构的比例对共振现象没有影响。传感器的灵敏度达到?0.408°/°C。该装置可以有效地提高角度扫描SPR传感器的精度和抗干扰能力,并具有良好的应用和促销价值。

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