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Ordered arrays of Au-nanobowls loaded with Ag-nanoparticles as effective SERS substrates for rapid detection of PCBs

机译:载有银纳米粒子的金纳米球有序阵列作为有效的SERS底物,可快速检测PCB

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摘要

Large-scale hexagonally close-packed arrays of Au-nanobowls (Au-NBs) with tens of Ag-nanoparticles (Ag-NPs) dispersed in each bowl (denoted as Ag-NPs@Au-NB arrays) are achieved and utilized as effective surface-enhanced Raman scattering (SERS) substrates. The field enhancement benefiting from the special particle-in-cavity geometrical structure as well as the high density of SERS hot spots located in the sub-10 nm gaps between adjacent Ag-NPs and at the particle-cavity junctions all together contribute to the high SERS activity of the Ag-NPs @Au-NB arrays; meanwhile the ordered morphological features of the Ag-NPs @Au-NB arrays guarantee uniformity and reproducibility of the SERS signals. By modifying the Ag-NPs @Au-NB arrays with mono-6-thio-β-cyclodextrin, the SERS detection sensitivity to 3,3′,4,4′-tetrachlorobiphenyl (PCB-77, one congener of polychlorinated biphenyls (PCBs, kinds of persistent organic pollutants which represent a global environmental hazard)) can be further improved and a low concentration down to 5 × 10~(-7) M can still be examined, showing promising potential for application in rapid detection of trace-level PCBs in the environment.
机译:实现了大规模的六角密堆积金纳米碗(Au-NBs)阵列,每个碗中散布了数十个Ag-纳米颗粒(Ag-NPs)(表示为Ag-NPs @ Au-NB阵列),并被有效地利用表面增强拉曼散射(SERS)衬底。得益于特殊的腔内颗粒几何结构以及位于相邻Ag-NP之间亚10纳米间隙以下以及腔体与腔体结合处的SERS热点的高密度,场增强作用共同促进了高Ag-NPs @ Au-NB阵列的SERS活性;同时,Ag-NPs @ Au-NB阵列的有序形态特征保证了SERS信号的均匀性和可再现性。通过用单-6-硫代-β-环糊精修饰Ag-NPs @ Au-NB阵列,SERS检测对3,3',4,4'-四氯联苯(PCB-77,一种多氯联苯(PCBs)的敏感性) ,可以进一步改善代表全球环境危害的持久性有机污染物的种类)),并且仍可以检测低至5×10〜(-7)M的低浓度,显示出有望用于快速检测痕量水环境中的PCB。

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