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首页> 外文期刊>International journal of analytical chemistry >A Versatile SERS Sensor for Multiple Determinations of Polycyclic Aromatic Hydrocarbons and Its Application Potential in Analysis of Fried Foods
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A Versatile SERS Sensor for Multiple Determinations of Polycyclic Aromatic Hydrocarbons and Its Application Potential in Analysis of Fried Foods

机译:一种多功能的SERS传感器,用于多环芳烃的多个测定及其在油炸食品分析中的应用潜力

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Polycyclic aromatic hydrocarbons (PAHs), due to their high hydrophobicity, have low affinity for metallic SERS-active surfaces, which leads to their low SERS detection sensitivity. Various functional groups have been used to improve the affinity of metallic substrates towards the target PAHs. However, a large portion of the signals generated from the “first-layer effect” of the functionalized substrates may complicate the spectrum, leading to a distortion in the assignment of the intrinsic SERS fingerprints of PAHs. In this study, a SERS sensor composed of Au nanoparticles (AuNPs) and reoxidized graphene oxide (rGO) was developed for the simultaneous determination of 16 EPA priority PAHs. The synthesis of the rGO/AuNP substrate can be realized without a complicated modification process. All the 16 PAHs could be identified based on their characteristic peaks in the presence of the composited substrate, with estimated LOD as low as 0.2–2?ng·mL?1. The binary linear regression was optimized as the fitting model for all PAHs except for benzo(k)fluoranthene, with the linear correlation coefficient ranging from 0.9889 to 0.9997. Based on the developed SERS substrates and sample pretreatment, the characteristic SERS peaks of four PAHs in Chinese traditional fried food (youtiao) were identified without any background interference. The whole detection process only takes approximately 15 minutes. The results demonstrate the potential of the multicomponent on-field detection of PAHs.
机译:由于它们的高疏水性,多环芳烃(PAHS)对金属SERS-活性表面具有低亲和力,这导致它们的低位检测灵敏度。已经使用各种官能团来改善金属底物朝向靶PAH的亲和力。然而,官能化基板的“第一层效应”产生的大部分信号可以使频谱复杂化,导致PAHS的内在SER指纹的分配中的失真。在该研究中,开发了由Au纳米颗粒(AUNP)和可环化的石墨烯氧化物(RGO)组成的SERS传感器,用于同时测定16个EPA优先PAHS。可以在没有复杂的改性过程的情况下实现RGO / AUNP基板的合成。可以基于它们存在于复合基材存在下的特征峰的所有16pahs,估计LOD低至0.2-2≤ml·mlα1。除了苯并(k)氟化物外,二进制线性回归作为所有PAHS的拟合模型,线性相关系数为0.9889至0.9997。基于发发的SERS底物和样品预处理,鉴定了中国传统油炸食品(Youtiao)中四个PAH的特征SERS峰,而无需任何背景干扰。整个检测过程只需要大约15分钟。结果表明了PAHS的多组分现场检测的潜力。

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