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Fabrication of Multifunctional SERS Platform Based on Ag NPs Self-Assembly Ag-AAO Nanoarray for Direct Determination of Pesticide Residues and Baicalein in Real Samples

机译:基于AG NPS自组装AG-AAO纳米阵列的多功能SERS平台制备用于直接测定真实样品中的农药残留和BAICALID

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Aiming at the shortcomings of high cost and time-consumption in traditional liquid chromatography, an effective surface enhanced Raman scattering (SERS)-based trace detection method has been proposed to quantitatively identify the active component of traditional Chinese medicine. In this paper, a high-performance and versatile SERS platform based on Ag nanoparticles (NPs) self-assembly Ag-anodized aluminium (Ag NPs-Ag-AAO) nanoarray was fabricated by controllable physico-chemical preparation technology. The results indicated that the electromagnetic field enhancement effect was sharply strengthened as Ag NPs assembled, and the experimental enhancement factor (EEF) value was calculated to be 1.0083 × 106. This novel Ag NPs-Ag-AAO nanoarray with substantial “hot spots” exhibited high SERS signal reproducibility, with the relative standard deviation (RSD) value at less than 2.23%. More importantly, this SERS platform was applied to detect active component Baicalein in Scutellaria baicalensis, and the limit of detection (LOD) was located at 10 fg/mL. Therefore, this Ag NPs-Ag-AAO nanoarray with high sensitivity, strong Raman signal reproducibility and reliable practicability has broad application prospects in the rapid detection of trace substances in the active components of traditional Chinese medicine and is expected to be popularized.
机译:针对传统液相色谱法的高成本和时间消耗的缺点,已经提出了基于有效的表面增强拉曼散射(SERS)的基于痕量检测方法,以定量识别中药的活性成分。本文采用可控的物理化学制备技术制造了基于Ag纳米颗粒(NPS)自组装Ag阳极氧化铝(Ag NPS-Ag-AaO)纳米纳米纳米纳米纳米纳米纳米纳米(AG NPS-AG-AAO)纳米阵列的高性能和多功能SERs平台。结果表明,随着AG NPS组装,实验增强因子(EEF)值计算为1.0083×106.这篇新的AG NPS-AG-AAO纳米阵列具有实质性“热点”,电磁场增强效果急剧加强。高级信号再现性,相对标准偏差(RSD)值小于2.23%。更重要的是,该SERS平台应用于检测Cocutellaria Baicalensis中的活性成分Baicalein,并且检测极限(LOD)位于10 fg / ml。因此,这种具有高灵敏度的AG NPS-AG-AAO纳米阵列,强大的拉曼信号再现性和可靠的实用性具有广泛的应用前景,在快速检测中药活性成分中的痕量物质,预计将受到普及。

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