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Silver-chitosan nanocomposite as a plasmonic platform for SERS sensing of polyaromatic sulfur heterocycles in oil fuel

机译:银壳聚糖纳米复合材料作为浆液燃料中多芳硫杂环的SERS感应等离子体平台

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摘要

Herein, a silver-chitosan nanocomposite for application in surface enhanced Raman spectroscopy (SERS) sensing was proposed. It was shown that optically transparent chitosan coatings with 0.8 mu m thickness allow penetration of target analytes to silver nanoparticles and the analysis in both polar and nonpolar solvents. Under the chosen conditions, chitosan formed continuously smooth films and coatings stabilizing rough nanostructured metallic surfaces and served as a suitable matrix for immobilization, uniform spreading, and preconcentration of the analytes. Polycyclic aromatic sulfur heterocycles were chosen as target analytes being one of the most important fuel quality markers, hazardous components, and the hardest-to-remove impurities. For the most effective immobilization and even distribution of the analytes onto a nanostructured metallic surface, an additional polymer layer of chitosan was found to be needed. The presence of thin films of chitosan resulted in higher reproducibility of SERS spectra as compared to bare nanostructured silver substrates. Additionally, the developed nanocomposite SERS sensors provided the rapid determination of dibenzothiophene and its derivatives in isooctane with the threshold of detection better than 0.1 mu M. This approach was successfully applied in the analysis of real fuel samples and the results agreed well with independently measured FTIR and GC-MS data.
机译:在此,提出了一种用于表面增强拉曼光谱(SERS)感测的用于应用的银 - 壳聚糖纳米复合物。结果表明,具有0.8μm的光学透明的壳聚糖涂层,厚度为0.8μm,允许将靶分析物渗透到银纳米粒子上,并在极性和非极性溶剂中分析。在所选条件下,壳聚糖形成连续光滑的薄膜和涂层稳定粗纳米结构的金属表面,并用作适当的基质,用于固定,均匀扩散和分析物的前浓缩。选择多环芳族硫杂环作为靶分析物是最重要的燃料质量标志物,危险组分和最苛刻的杂质之一。对于最有效的固定性甚至分析物分布在纳米结构金属表面上,发现需要另外的壳聚糖聚合物层。与裸纳米结构银基材相比,壳聚糖的薄膜的存在导致SERS光谱的再现性较高。另外,开发的纳米复合物SERS传感器提供了在异辛烷中的快速测定了异辛烷的阈值,检测阈值优于0.1μm。该方法在实际燃料样本的分析中成功应用,并且结果与独立测量的FTIR相同和GC-MS数据。

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