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用于精确校正的表面等离子体共振光谱仪响应的详细建模

Detailed Modeling of Surface-Plasmon Resonance Spectrometer Response for Accurate Correction.

作者信息

Araguillin-López Ricardo David, Méndez-Cevallos Angel Dickerson, Costa-Vera César

机构信息

Departamento de Automatización y Control Industrial, Escuela Politécnica Nacional, Quito 170525, Ecuador.

Mass Spectrometry and Optical Spectroscopy Group, Departamento Física, Escuela Politécnica Nacional, Quito 170525, Ecuador.

出版信息

Sensors (Basel). 2025 Feb 1;25(3):894. doi: 10.3390/s25030894.

Abstract

This work identifies and models the inline devices in an experimental surface-plasmon resonance spectroscopy setup to determine the system's transfer function. This allows for the comparison of theoretical and experimental responses and the analysis of the dynamics of the components of an analyte placed on the sensor at the nanometer scale. The transfer functions of individual components, including the light source, polarizers, spectrometer, optical fibers, and the SPR sensor, were determined experimentally and theoretically. The theoretical model employed Planck's law for the light source, manufacturer specifications for some components, and experimental characterization for others, such as the polarizers and optical fibers. The SPR sensor was modeled using characteristic matrix theory, incorporating the optical constants of the prism, gold film, chromium adhesive layer, and analyte. The combined transfer functions created a comprehensive model of the entire experimental system. This model successfully reproduced the experimental SPR spectrum with a similarity greater than 95%. The system's operational range was also extended, constrained by the signal-to-noise ratio at the spectrum's edges. The detailed model allows for the accurate correction of the measured spectra, which will be essential for the further analysis of nanosuspensions and molecules dissolved in liquids.

摘要

这项工作识别并对实验性表面等离子体共振光谱装置中的在线设备进行建模,以确定系统的传递函数。这使得能够比较理论响应和实验响应,并分析置于纳米尺度传感器上的分析物各组分的动力学。通过实验和理论确定了包括光源、偏振器、光谱仪、光纤和表面等离子体共振传感器在内的各个组件的传递函数。理论模型对光源采用普朗克定律,对一些组件采用制造商规格,对其他组件(如偏振器和光纤)采用实验表征。表面等离子体共振传感器使用特征矩阵理论进行建模,纳入了棱镜、金膜、铬粘附层和分析物的光学常数。组合的传递函数创建了整个实验系统的综合模型。该模型成功地再现了实验表面等离子体共振光谱,相似度大于95%。系统的工作范围也得到了扩展,受光谱边缘信噪比的限制。详细模型允许对测量光谱进行精确校正,这对于进一步分析纳米悬浮液和溶解在液体中的分子至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d30/11819726/1f4e712165e4/sensors-25-00894-g001.jpg

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