首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Large-scale well-separated Ag nanosheet-assembled micro-hemispheres modified with HS-β-CD as effective SERS substrates for trace detection of PCBs
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Large-scale well-separated Ag nanosheet-assembled micro-hemispheres modified with HS-β-CD as effective SERS substrates for trace detection of PCBs

机译:HS-β-CD修饰的大规模良好分离的银纳米片组装微半球,可作为有效SERS底物,用于PCB的痕量检测

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摘要

Large-scale well-separated Ag nanosheet-assembled micro-hemispheres with similar size and morphology were achieved on bare commercial ITO substrates via simple electrodeposition in a mixed aqueous solution of citric acid and AgNO3. It was found that appropriate electrodeposition current density and citric acid concentration are critical to the formation of well-separated nanosheet-assembled micro-hemispheres with similar size and morphology. The well-separated Ag nanosheet-assembled micro-hemispheres with similar size and morphology ensure the good surface-enhanced Raman scattering (SERS) signal reproducibility from different micro-hemispheres, and the sufficient sub-10 nm gaps on the nanosheet-assembled micro-hemispheres guarantee the high SERS sensitivity. By further modifying the Ag nanosheet-assembled micro-hemispheres with mono-6-thio-3-cyclodextrin (HS-β-CD), the SERS detection limit of 3,3',4,4'-tetrachlorobiphenyl (PCB-77) can be further reduced, and two different polychlorinated biphenyl (PCB) congeners of 2-chlorobiphenyl (PCB-1) and PCB-77 in a mixed solution can be distinguished, indicating that the large-scale well-separated Ag nanosheet-assembled micro-hemispheres modified with HS-β-CD may have great potential as effective SERS substrates for rapid trace detection of PCBs.
机译:通过在柠檬酸和AgNO3的混合水溶液中进行简单的电沉积,在裸露的商用ITO基板上实现了具有相似尺寸和形态的大规模,良好分离的,由Ag纳米片组装而成的微半球。发现适当的电沉积电流密度和柠檬酸浓度对于形成尺寸和形态相似的,良好分离的纳米片组装微半球至关重要。尺寸和形态相近的经过良好分离的银纳米片组装的微半球确保了来自不同微半球的良好的表面增强拉曼散射(SERS)信号再现性,以及纳米片组装的微膜上足够的10 nm以下间隙半球确保了较高的SERS灵敏度。通过用单-6-硫代-3-环糊精(HS-β-CD)进一步修饰Ag纳米片组装的微半球,SERS检测极限为3,3',4,4'-四氯联苯(PCB-77)可以进一步还原,并且可以区分混合溶液中2-氯联苯(PCB-1)和PCB-77的两个不同的多氯联苯(PCB)同系物,这表明大规模分离良好的Ag纳米片组装的微结构HS-β-CD修饰的半球作为快速SPCB检测的有效SERS底物可能具有巨大潜力。

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