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Improving SERS hot spots for on- site pesticide detection by combining silver nanoparticles with nanowires

机译:通过将银纳米粒子与纳米线组合,改善SERS热点以进行现场杀虫剂检测

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Surface-enhanced Raman scattering (SERS) is a rapid and effective method for identifying fingerprint structures at low concentrations. However, the application of SERS for on-site detection with flexible and robust structures is challenging. In this work, we have developed a flexible, robust and reusable silver-functionalized SERS substrate for pesticide residue detection. This SERS substrate is composed of a silver nanoparticle@nanowire (AgNP@AgNW) network that is embedded into polydimethylsiloxane. The unique network structure provides rich SERS hot spots, where the electromagnetic field can be magnified through the excitation of localized surface plasmon resonances of AgNPs that surround AgNWs. The embedded structure improves the adsorption ability of the surface for target molecules, thereby reducing Raman fluorescence. In addition, this substrate retains 54.7% of the original Raman intensity after ten cycles; hence, this substrate shows satisfactory recyclability performance. Moreover, the SERS substrate exhibits acceptable detection reproducibility with 4.22% relative standard deviation and satisfactory tensile properties. These results demonstrate that our substrate has the potential for use in environmental supervision, food safety, explosive detection and security applications.
机译:表面增强拉曼散射(SERS)是一种快速有效的方法,用于以低浓度识别指纹结构。然而,SERS在现场检测中使用灵活和鲁棒结构的应用是具有挑战性的。在这项工作中,我们开发了一种灵活,坚固且可重复使用的银官能化SERS基板,用于农药残留检测。该SERS基板由嵌入聚二甲基硅氧烷的银纳米颗粒@纳米线(AGNP @ AgNW)网络组成。独特的网络结构提供了富有的SERS热点,其中电磁场可以通过围绕AGNWS的AGNP的局部表面等离子体共振来放大电磁场。嵌入式结构改善了靶分子表面的吸附能力,从而减少拉曼荧光。此外,该基材在十个周期后保留了原始拉曼强度的54.7%;因此,该基材显示出令人满意的可回收性性能。此外,SERS衬底具有可接受的检测再现性,具有4.22%的相对标准偏差和令人满意的拉伸性能。这些结果表明,我们的基材具有环境监督,食品安全,爆炸性检测和安全应用的可能性。

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