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Facile Detection of Polycyclic Aromatic Hydrocarbons by a Surface-Enhanced Raman Scattering Sensor Based on the Au Coffee Ring Effect

机译:基于金咖啡环效应的表面增强拉曼散射传感器方便地检测多环芳烃

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Surface-enhanced Raman scattering (SERS) analysis of environmental hydrophobic pollutants without chemical functionalfaation of a bare nanoparticle (NP) substrate presents a challenge. The motivation for our study is to develop a highly reproducible and robust portable SERS sensor for detection and identification of polycyclic aromatic hydrocarbons (PAHs) using bare Au NPs. Our hypothesis is that the coffee ring effect could separate PAHs from the bulk solution and concentrate them on the closely packed Au NP ring, consequently enhancing their Raman scattering. This premise was confirmed with the commonly used citrate-reduced Au NPs in 20 nm, having no structural uniqueness. Because of the coffee ring effect, however, closely packed but not aggregated Au NP arrays were formed and, consequently, facilitated the separation and concentration of hydrophobic PAHs. As a result, a prominent SERS enhancement can be obtained on the ring because of the electromagnetic mechanism. A mixture of six PAHs with different numbers of benzene rings, namely, naphthalene, anthracene, pyrene, benzo[n]pyrene, benzo[g,h,i']perylene, and indeao[1,2,3-cd]pyrene, could be readily identified in river water. This portable SERS sensor based on the coffee ring effect provides a robust and versatile approach in PAH detection without the need for stringent structural requirements for Au NPs.
机译:在没有裸纳米粒子(NP)基板化学功能形成的情况下,对环境疏水性污染物进行表面增强拉曼散射(SERS)分析是一项挑战。我们研究的动机是开发一种可重现且坚固的便携式SERS传感器,用于使用裸金纳米颗粒检测和鉴定多环芳烃(PAH)。我们的假设是,咖啡环效应可能会将多环芳烃从本体溶液中分离出来并将它们集中在紧密堆积的金纳米颗粒环上,从而增强了它们的拉曼散射。使用20 nm的常用柠檬酸盐还原的Au NPs证实了这一前提,它没有结构上的独特性。然而,由于咖啡环效应,形成了紧密堆积但未聚集的Au NP阵列,因此促进了疏水性PAHs的分离和浓缩。结果,由于电磁机理,可以在环上获得显着的SERS增强。六个具有不同苯环数目的PAH的混合物,分别是萘,蒽,pyr,苯并[n] py,苯并[g,h,i'] per和茚并[1,2,3-cd] py,在河水中很容易识别。这种基于咖啡环效应的便携式SERS传感器为PAH检测提供了强大而通用的方法,而无需对Au NP进行严格的结构要求。

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