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Localized Surface Plasmon Resonance sensor of Gold Nanoparticles for detection pesticides in water

机译:金纳米粒子的局部表面等离子体共振传感器,用于水中农药的检测

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This paper reports the utilization of plasmonic properties of Gold Nanoparticles (GNPs) as an optical sensor to detect pesticides in water. The pesticides with trade name of Ridomil G MZ 68 WP fungicide and Water-Dispersible Granules WG insecticide were used in this study. Spherical GNPs of the average size of ca. 31±7 nm were grown on quartz substrate using seed mediated growth. An optical sensor system was setup, comprises a tungsten lamp light source, a duplex fiber optic probe, a spectrometer and a sensor chamber. Detection of pesticides was done by comparing the Localized Surface Plasmon Resonance (LSPR) spectra of the GNPs film immersed in the deionised water and in pesticides solutions by varying the concentration of pesticides solutions from 2.5 μg/L to 2500 μg/L. The LSPR spectra of GNPs sample were very sensitive to the presence of pesticides where the spectra intensities are increases with the concentrations of the pesticides solutions.
机译:本文报道了利用金纳米粒子(GNP)的等离子体特性作为光学传感器检测水中的农药的方法。本研究使用商品名为Ridomil G MZ 68 WP杀真菌剂和水分散性颗粒WG杀虫剂的农药。球形GNP的平均大小约为使用种子介导的生长在石英基板上生长31±7 nm。设置了一个光学传感器系统,包括一个钨灯光源,一个双工光纤探头,一个光谱仪和一个传感器腔。通过比较浸泡在去离子水和农药溶液中的GNP薄膜的局部表面等离子体共振(LSPR)光谱(通过将农药溶液的浓度从2.5μg/ L更改为2500μg/ L)来进行农药检测。 GNPs样品的LSPR光谱对农药的存在非常敏感,其光谱强度随农药溶液的浓度而增加。

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