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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Application of Micro-Attenuated Total Reflectance Infrared Spectroscopy to Quantitative Analysis of Optical Fiber Coatings: Effects of Optical Contact
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Application of Micro-Attenuated Total Reflectance Infrared Spectroscopy to Quantitative Analysis of Optical Fiber Coatings: Effects of Optical Contact

机译:微衰减全反射红外光谱在光纤涂层定量分析中的应用:光学接触的影响

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摘要

Micro-attenuated total reflectance (ATR) infrared spectroscopy is one of the few methods applicable for an in situ analysis of polymer coatings. In this method, the information is collected using an internal reflection element (IRE), which is brought into contact with the coated substrate. Perfect optical contact is hardly achievable for non-flat substrates and/or for those samples that cannot be well aligned with respect to the IRE. Consequently, the infrared peak intensities, their ratios, and all quantities calculated from the spectra become dependent upon the optical contact quality. In this work, we suggest a model that describes the peak intensities in terms of the optical contact. As an illustration, we apply this model to polymer-coated optical fibers. Relatively small diameters of tested fibers and their cylindrical shape result in imperfect optical contact between the sample and the IRE. Spectroscopic approaches of determining the degree of cure of polymer coatings are analyzed in view of the obtained results. Ways of minimizing the error induced by imperfect optical contact are suggested.
机译:微衰减全反射(ATR)红外光谱是可用于聚合物涂层原位分析的少数方法之一。在这种方法中,使用内部反射元件(IRE)收集信息,该内部反射元件与涂层基材接触。对于非平坦基板和/或无法相对于IRE很好对准的样品,很难实现完美的光学接触。因此,红外峰强度,它们的比率以及根据光谱计算出的所有数量都取决于光学接触质量。在这项工作中,我们建议一个模型,该模型根据光学接触描述峰强度。作为说明,我们将此模型应用于聚合物涂层的光纤。被测纤维的相对较小的直径及其圆柱形状会导致样品与IRE之间的光学接触不完善。鉴于所获得的结果,分析了确定聚合物涂层固化程度的光谱方法。建议最小化由不完善的光学接触引起的误差的方法。

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