首页> 外文期刊>LWT-Food Science & Technology >Rapid analysis of herbicide diquat in apple juice with surface enhanced Raman spectroscopy: Effects of particle size and the ratio of gold to silver with gold and gold-silver core-shell bimetallic nanoparticles as substrates
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Rapid analysis of herbicide diquat in apple juice with surface enhanced Raman spectroscopy: Effects of particle size and the ratio of gold to silver with gold and gold-silver core-shell bimetallic nanoparticles as substrates

机译:用表面增强拉曼光谱法快速分析苹果汁中的苹果汁:粒径与金与金与金银芯 - 壳双金属纳米颗粒的影响为基板

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摘要

Twelve different Au nanoparticles (NPs; diameter, 19-87 nm) and Au-Ag core-shell NPs (diameters of core and particles: 19 nm, 35-91 nm; 43 nm, 66-127 nm) varying in size and the ratio of gold to silver were employed as surface enhanced Raman scattering (SERS) substrates for rapid analysis of herbicide diquat cation in apple juice. The minimum detectible concentrations for diquat cation standards with three selected optimal SERS substrates were 0.005 mg/L (43 nm Au NPs), 0.05 mg/L (91 nm Au-Ag NPs, 19 nm core), and 0.025 mg/L (78 nm Au-Ag NPs, 43 nm core), respectively. However, only the 78 nm Au-Ag NPs led to acceptable SERS enhancement effect for diquat cation in apple juice with minimum sample preparation, allowing its detection at as low as 0.025 mg/ L. In addition to providing a rapid analysis approach for diquat in fruit juices, this study indicates that the influences of particle size and composition of NPs on SERS enhancement effects for an analyte in standard solutions could be quite different from that in a real food sample, while the optimal ratio of gold to silver of the bimetallic NPs depended on the Au seeds and sample matrix.
机译:12种不同的Au纳米颗粒(NPS;直径,19-87nm)和Au-Ag核 - 壳NPS(核心和颗粒直径:19nm,35-91nm; 43nm,66-127nm)变化的大小和金与银的比例用作表面增强拉曼散射(SERS)底物,用于快速分析除草剂的苹果汁中的除草剂阳离子。具有三种选定的最佳SERS基材的Diquat阳离子标准的最小可测量浓度为0.005mg / L(43nm,43nm,91nm Au-Ag NPS,19nm核心)和0.025mg / L(78 NM AU-AG NPS,43nm核心)。然而,只有78nm Au-Ag NPS导致了可接受的SERS增强效果,在苹果汁中具有最小样品制备的苹果汁,允许其低至0.025mg / L的检测。除了为进入的快速分析方法提供快速分析方法果汁,本研究表明,NPS对标准溶液中分析物的分析物对分析物的粒度增强效应的影响可能与真正的食物样本中的粒子增强效果相比,金对Bimetallic NPS的银色的最佳比率取决于Au种子和样品基质。

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