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Modelling of surface plasmon resonance sensor for detection of mass concentration of ethanol and methanol in a binary mixture

机译:用于检测二元混合物中乙醇和甲醇质量浓度的表面等离子体共振传感器的建模

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Modelling of a surface plasmon resonance sensor for detection of ethanol or methanol content in water is presented. The reflectivities of these sensors are derived using transfer matrix method and hence the corresponding sensitivity and detection accuracy are obtained in the presence of high index overlayer, like silicon and chalcogenide. It is observed that the resonant wavelength of surface plasmon resonance sensor is shifted toward higher wavelength with increase of refractive index and thickness of overlayer. Hence, by adjusting their values, the desired spectral operation range of this sensor is obtained. The sensitivity of this sensor with silicon overlayer is larger than the chalcogenide overlayer but at the same time detection accuracy is smaller. This sensor can be used to detect the mass concentration of ethanol, methanol and other similar materials. A method to obtain the percentage mass concentration of ethanol is discussed.
机译:介绍了用于检测水中乙醇或甲醇含量的表面等离子体共振传感器的建模。这些传感器的反射率是使用转移矩阵方法得出的,因此在存在高折射率覆盖层(如硅和硫属化物)的情况下,可以获得相应的灵敏度和检测精度。观察到,随着折射率和覆盖层厚度的增加,表面等离子体激元共振传感器的共振波长向更高的波长偏移。因此,通过调节它们的值,可以获得该传感器的期望光谱操作范围。具有硅覆盖层的该传感器的灵敏度大于硫族化物覆盖层的灵敏度,但同时检测精度较小。该传感器可用于检测乙醇,甲醇和其他类似物质的质量浓度。讨论了获得乙醇质量百分比浓度的方法。

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