Raman Research Laboratory, Department of Chemistry, SRM University-AP, Andhra Pradesh, Amaravati, 522503, India.
Department of Electro-Optical Engineering, National Taipei University of Technology, Taipei, 10608, Taiwan.
Mikrochim Acta. 2024 May 28;191(6):347. doi: 10.1007/s00604-024-06421-1.
The synthesis of three-dimensional silver nanopopcorns (Ag NPCs) onto a flexible polycarbonate membrane (PCM) for the detection of nitrofurazone (NFZ) on the fish surface by surface-enhanced Raman spectroscopy (SERS) is presented. The proposed flexible Ag-NPCs/PCM SERS substrate exhibits significant Raman signal intensity enhancement with the measured enhancement factor of 2.36 × 10. This is primarily attributed to the hotspots created on Ag NPCs, including numerous nanoscale protrusions and internal crevices distributed across the surface of Ag NPCs. The detection of NFZ by this flexible SERS substrate demonstrates a low limit of detection (LOD) of 3.7 × 10 M and uniform and reproducible Raman signal intensities with a relative standard deviation below 8.34%. It also exhibits excellent stability, retaining 70% of its efficacy even after 10 days of storage. Notably, the practical detection of NFZ in tap water, honey water, and fish surfaces achieves LOD values of 1.35 × 10 M, 5.76 × 10 M, and 3.61 × 10 M, respectively, which highlights its effectiveness across different sample types. The developed Ag-NPCs/PCM SERS substrate presents promising potential for sensitive SERS detection of toxic substances in real-world samples.
本文提出了一种将三维银纳米爆米花(Ag NPCs)合成到柔性聚碳酸酯膜(PCM)上,用于通过表面增强拉曼光谱(SERS)检测鱼类表面硝基呋喃唑(NFZ)的方法。所提出的柔性 Ag-NPCs/PCM SERS 基底表现出显著的拉曼信号强度增强,其测量的增强因子为 2.36×10。这主要归因于 Ag NPCs 上的热点,包括分布在 Ag NPCs 表面的许多纳米级突起和内部缝隙。该柔性 SERS 基底对 NFZ 的检测表现出低检测限(LOD)为 3.7×10M,具有均匀和可重复的拉曼信号强度,相对标准偏差低于 8.34%。它还表现出优异的稳定性,即使在储存 10 天后,仍保留 70%的效力。值得注意的是,在自来水、蜂蜜水和鱼表面实际检测 NFZ 的 LOD 值分别为 1.35×10M、5.76×10M 和 3.61×10M,这表明它在不同类型的样品中都具有有效性。所开发的 Ag-NPCs/PCM SERS 基底具有在实际样品中进行灵敏 SERS 检测有毒物质的巨大潜力。