School of Chemistry and Chemical Engineering, Hefei University of Technology, 193 Tunxi Road, Hefei, 230009, China.
Institute of Solid State Physics, Hefei Institutes of Physical Science, Chinese Academy of Sciences, Hefei, Anhui, 230031, China.
Anal Methods. 2022 Sep 1;14(34):3250-3259. doi: 10.1039/d2ay01068b.
Rapid and on-site Raman spectroscopic identification and quantification of pesticide residues have been restricted to the low instrumental sensitivity of a portable Raman instrument, and no ideal platforms have been reported for analyzing pesticides on real sample surfaces. An efficient method to improve the detection sensitivity is to fabricate a highly sensitive surface-enhanced Raman scattering (SERS) substrate. Here, we present a MOF-derived ZnO@TiO heterostructure combined with plasmonic AgNPs as a SERS sensor to achieve synergetic EM and CM enhancement, exhibiting high sensitivity, excellent signal reproducibility (RSD < 5.9%) and superior stability for analysis of model molecules. The SERS sensor achieved a low detection concentration of 10 M for both CV and R6G molecular solutions on a portable Raman device. As a proof of concept, we modelled a pesticide residue on real samples of dendrobium leaves. Thiram, triazophos and fonofos solutions were selected as analytes for mimicking the function of on-site analysis. The SERS analytical platform showed not only high sensitivity for single- and multi-component identification, but also quantitative detection of pesticide residues on dendrobium leaves. These preliminary investigations indicate that this SERS analytical platform will allow the development and potential applications in rapid and on-site pesticide analysis.
快速且现场的拉曼光谱技术可用于鉴定和定量农药残留,但由于便携式拉曼仪器的仪器灵敏度较低,因此一直受到限制,目前尚未报道用于分析实际样品表面上农药的理想平台。提高检测灵敏度的一种有效方法是制备高灵敏度的表面增强拉曼散射(SERS)基底。在这里,我们提出了一种由 MOF 衍生的 ZnO@TiO 异质结构与等离子体 AgNPs 结合作为 SERS 传感器,以实现协同的 EM 和 CM 增强,从而表现出高灵敏度、出色的信号重现性(RSD<5.9%)和优异的稳定性,可用于分析模型分子。该 SERS 传感器在便携式 Raman 设备上实现了对 CV 和 R6G 分子溶液的低检测浓度 10 M。作为概念验证,我们在铁皮石斛叶片的实际样品上模拟了农药残留。选择代森锰锌、三唑磷和福美双溶液作为分析物,模拟现场分析的功能。该 SERS 分析平台不仅表现出对单组分和多组分识别的高灵敏度,而且还可以对铁皮石斛叶片上的农药残留进行定量检测。这些初步研究表明,该 SERS 分析平台将允许快速且现场进行农药分析的开发和潜在应用。