首页> 美国卫生研究院文献>Frontiers in Chemistry >A Simple SERS-Based Trace Sensing Platform Enabled by AuNPs-Analyte/AuNPs Double-Decker Structure on Wax-Coated Hydrophobic Surface
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A Simple SERS-Based Trace Sensing Platform Enabled by AuNPs-Analyte/AuNPs Double-Decker Structure on Wax-Coated Hydrophobic Surface

机译:一个简单的基于SERS的痕迹传感平台该平台由蜡涂疏水表面上的AuNPs-分析物/ AuNPs双层结构启用

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摘要

In this work, a simple and versatile SERS sensing platform enabled by AuNPs-analyte/AuNPs double-decker structure on wax-coated hydrophobic surface was developed using a portable Raman spectrometer. Wax-coated silicon wafer served as a hydrophobic surface to induce both aggregation and concentration of aqueous phase AuNPs mixed with analyte of interest. After drying, another layer of AuNPs was drop-cast onto the layer of AuNPs-analyte on the substrate to form double-decker structure, thus introducing more “hot spots” to further enhance the Raman signal. To validate the sensing platform, methyl parathion (pesticide), and melamine (a nitrogen-enrich compound illegally added to food products to increase their apparent protein content) were employed as two model compounds for trace sensing demonstration. The as-fabricated sensor showed high reproducibility and sensitivity toward both methyl parathion and melamine detection with the limit of detection at the nanomolar and sub-nanomolar concentration level, respectively. In addition, remarkable recoveries for methyl parathion spiked into lake water samples were obtained, while reasonably good recoveries for melamine spiked into milk samples were achieved. These results demonstrate that the as-developed SERS sensing platform holds great promise in detecting trace amount of hazardous chemicals for food safety and environment protection.
机译:在这项工作中,使用便携式拉曼光谱仪开发了一个简单而通用的SERS传感平台,该平台通过AuNPs-analyte / AuNPs双层结构在涂蜡的疏水表面上实现。涂蜡的硅晶片充当疏水表面,以诱导与目标分析物混合的水相AuNPs聚集和浓缩。干燥后,将另一层AuNPs滴铸到基板上的AuNPs分析物层上,形成双层结构,从而引入更多的“热点”以进一步增强拉曼信号。为了验证传感平台,使用甲基对硫磷(农药)和三聚氰胺(非法添加到食品中以增加其表观蛋白质含量的氮富集化合物)作为痕量传感演示的两种模型化合物。制成的传感器对甲基对硫磷和三聚氰胺的检测均具有很高的重现性和灵敏度,其检测极限分别在纳摩尔和亚纳摩尔浓度水平。此外,加标到湖水样品中的甲基对硫磷得到了显着的回收率,而加标到牛奶样品中的三聚氰胺得到了相当好的回收率。这些结果表明,已开发的SERS传感平台在检测痕量有害化学物质以实现食品安全和环境保护方面具有广阔的前景。

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