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Fused silica capillary interferometer with a layer-by-layer functional coating for the analysis of chemicals content in aqueous solutions

机译:熔融二氧化硅毛细管干涉仪,具有逐层官能涂层,用于分析水溶液中的化学品含量

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A simple fused silica capillary interferometric (FSCI) sensor has been proposed and investigated for the detection and analysis of multiple chemical compounds content in aqueous solutions. The sensor was fabricated by splicing a commercially available fused silica capillary (FSC) with two single mode fibers to create a 0.7 cm long air cavity. The fiber surface was functionalized with two different polymers: poly (allylamine hydrochloride) (PAH) and sol-gel silica in sequence using a layer-by-layer deposition method. The operating principle of the sensor relies on light interference in the fused silica capillary cavity due to adhesion of the different chemical compounds on the functional coating surface. Studies of the sensors response to the presence of five different compounds in water solutions at different concentrations have been carried out and the results have been analyzed using the principal component analysis (PCA). This work is a preliminary investigation towards the development of a novel method for assessment of content and quality of alcoholic beverages in real time using functionalized FSCIs.
机译:已经提出了一种简单的熔融石英毛细管干涉测定(FSCI)传感器,并研究了水溶液中多种化合物含量的检测和分析。通过用两个单模纤维拼接市售的熔融石英毛细管(FSC)来制造传感器以产生0.7cm长的空腔。纤维表面用两种不同的聚合物官能化:使用逐层沉积法依次用两种不同的聚合物:聚(盐酸丙基丙酰胺)(PAH)和溶胶 - 凝胶二氧化硅。由于不同的化合物在功能涂层表面上的粘合,传感器的操作原理依赖于熔融二氧化硅毛细管腔中的光干扰。已经进行了对传感器对不同浓度的水溶液中的五种不同化合物存在的反应,并使用主成分分析(PCA)分析结果。这项工作是利用官能化FSCIS实时地了解促进新的含量饮料含量和质量的新方法的初步调查。

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