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Silver nanoparticle-assembled micro-bowl arrays for sensitive SERS detection of pesticide residue

机译:用于敏感SERS的银纳米粒子组装的微碗阵列农药残留物检测

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摘要

It is of great significance to develop a simple and effective method for constructing large-scale high-quality surface-enhanced Raman scattering (SERS) substrate. Here, an Ag nanoparticle-assembled micro-bowl array was prepared by a close-packed polystyrene (PS) sphere monolayer templated electrodeposition approach. The fabricated Ag nanoparticle-assembled micro-bowl array shows high SERS sensitivity to rhodamine 6G (R6G) under an ultra-low concentration of 1 fM, and exhibits excellent SERS spectral uniformity with a small relative standard deviation (RSD) of 7.6% and good reproducibility (a RSD similar to 8.2% for the average peak intensities from different batches of SERS substrates). The fabricated micro-bowl array SERS substrate was employed to detect pesticide residue (thiram and methyl parathion) on vegetables. The limit of detections (LODs) for the two pesticides are lower than the maximum residue limits (MRLs) set by the European Union respectively, showing promising application in rapid inspection of food safety.
机译:开发用于构建大型高质量表面增强拉曼散射(SERS)衬底的简单有效的方法具有重要意义。这里,通过紧密填充的聚苯乙烯(PS)球体单层模板电沉积方法制备AG纳米颗粒组装的微碗阵列。制造的Ag纳米粒子组装的微碗阵列显示出在1 fm的超低浓度下对罗丹明6g(R6G)的高敏感性,并且具有7.6%和良好的小相对标准偏差(RSD)的优异SERS光谱均匀性再现性(RSD类似于来自不同批次的SERS基材的平均峰值强度的8.2%)。使用制造的微碗阵列SERS基板用于检测蔬菜上的农药残留物(孕酮和甲基硫磷)。两种农药的检测极限(LODS)分别低于欧洲联盟设定的最大残留物限制(MRLS),展示了在快速检查食品安全方面的应用。

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