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A Surface-Enhanced Raman Scattering Optrode Prepared by in Situ Photoinduced Reactions and Its Application for Highly Sensitive On-Chip Detection

机译:原位光诱导反应制备的表面增强拉曼散射光极及其在高灵敏度芯片上检测中的应用

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摘要

A surface-enhanced Raman scattering (SERS)-active optical fiber sensor combining the optical fiber waveguide with various SERS substrates has been a powerful analytical tool for in situ and long-distance SERS detection with high sensitivity. The design and modification of a high-quality SERS-active sensing layer are important topics in the development of novel SERS-active optical fiber sensors. Here, we prepared a highly sensitive SERS-active optrode by in situ fabrication of a three-dimensional porous structure on the optical fiber end via a photoinduced polymerization reaction, followed by the growth of photochemical silver nanoparticles above the porous polymer material. The fabrication process is rapid (finished within 1 h) and can be on line under light control. The porous structure supports vast silver nanoparticles, which allows for strong electromagnetic enhancement of SERS. Interestingly, the preparation of this SERS optrode and its utilization for SERS detection can all be conducted in a microfluidic chip. The qualitative and quantitative on-chip SERS sensing of organic pollutants and pesticides has been achieved by this SERS optrode-integrated microfluidic chip, and its high detection sensitivity makes it a promising factor in the analysis of liquid systems.
机译:结合了光纤波导和各种SERS基板的表面增强拉曼散射(SERS)有源光纤传感器,已成为一种强大的分析工具,可进行高灵敏度的原位和长距离SERS检测。高质量SERS有源传感层的设计和修改是新型SERS有源光纤传感器开发中的重要主题。在这里,我们通过光致聚合反应在光纤端原位制造三维多孔结构,然后在多孔聚合物材料上方生长光化学银纳米颗粒,从而制备了高度敏感的SERS活性光极。制造过程快速(在1小时内完成),并且可以在光线控制下在线生产。多孔结构支撑着巨大的银纳米颗粒,从而可以增强SERS的电磁强度。有趣的是,该SERS电极的制备及其在SERS检测中的利用都可以在微流控芯片中进行。该SERS电极集成了微流控芯片,实现了对有机污染物和农药的片上SERS定性和定量检测,其高检测灵敏度使其成为液体系统分析中的有希望的因素。

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