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Innovative strategy on improved surface-enhanced Raman scattering sensing by using plasmon-activated water dissolving analyte

机译:采用血浆激活水分分析物改进表面增强拉曼散射感测的创新策略

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摘要

High surface-enhanced Raman scattering (SERS) enhancement is generally accompanied by low signal reproducibility. Thus, various complicated technologies focusing on SERS-active substrates were developed to overcome these limitations. On the other hand, innovatively treated plasmon-activated water (PAW) with properties distinct from those of untreated bulk water was previously reported. Herein, we propose an alternative promising strategy to obtain overall improved SERS performances of analyte solutions prepared using PAW instead of conventional deionized water (DIW). Interestingly, SERS signals were higher, but the corresponding relative standard deviations were lower for the model molecules of rhodamine 6G and methyl blue, with different concentrations prepared in PAW compared to those prepared in DIW. Moreover, these overall improved SERS performances were observed when detecting the pesticides acetamiprid (AC) and imidacloprid (IM) prepared in PAW, compared to those prepared in DIW. Experimental results indicated that the limit of detection (LOD) was 5 ppb (100 ppb based on DIW) for AC prepared using PAW. Moreover, the LOD was 10 ppb for IM prepared using PAW. These extremely low values of LOD detected for AC and IM were comparable to and even better than other SERS detection methods based on solutions prepared using organic solvents or organic solvent/water systems. Moreover, using PAW to dissolve analyte provides an innovative method in SERS studies.
机译:高表面增强拉曼散射(SERS)增强通常伴随着低信号再现性。因此,针对SERS活性基底的各种复杂技术被开发出来以克服这些限制。另一方面,之前有报道称,经过创新处理的等离子体激元活化水(PAW)的性质不同于未经处理的散装水。在此,我们提出了一种替代策略,以获得使用PAW而不是传统去离子水(DIW)制备的分析物溶液的整体增强SERS性能。有趣的是,与DIW中制备的分子相比,PAW中制备的不同浓度的罗丹明6G和甲基蓝模型分子的SERS信号更高,但相应的相对标准偏差更低。此外,与DIW中制备的农药相比,在检测PAW中制备的农药啶虫脒(AC)和吡虫啉(IM)时,观察到SERS性能的总体改善。实验结果表明,使用PAW制备的AC的检测限(LOD)为5 ppb(基于DIW的100 ppb)。此外,使用PAW制备的IM的LOD为10 ppb。AC和IM检测到的这些极低LOD值与基于使用有机溶剂或有机溶剂/水系统制备的溶液的其他SERS检测方法相当,甚至更好。此外,使用PAW溶解分析物为SERS研究提供了一种创新方法。

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