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Gold Nanoparticles with Different Particle Sizes for the Quantitative Determination of Chlorpyrifos Residues in Soil by SERS

机译:SERS定量测定土壤中毒死rif残留量的不同粒径的金纳米粒子

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摘要

Chlorpyrifos (CPF) is widely used in the prevention and control of crop pests and diseases in agriculture. However, the irrational utilization of pesticides not only causes environmental pollution but also threatens human health. Compared with the conventional techniques for the determination of pesticides in soil, surface-enhanced Raman spectroscopy (SERS) has shown great potential in ultrasensitive and chemical analysis. Therefore, this paper reported a simple method for synthesizing gold nanoparticles (AuNPs) with different sizes used as a SERS substrate for the determination of CPF residues in soil for the first time. The results showed that there was a good linear correlation between the SERS characteristic peak intensity of CPF and particle size of the AuNPs with an R2 of 0.9973. Moreover, the prepared AuNPs performed great ultrasensitivity, reproducibility and chemical stability, and the limit of detection (LOD) of the CPF was found to be as low as 10 μg/L. Furthermore, the concentrations ranging from 0.01 to 10 mg/L were easily observed by SERS with the prepared AuNPs and the SERS intensity showed a good linear relationship with an R2 of 0.985. The determination coefficient (Rp2) reached 0.977 for CPF prediction using the partial least squares regression (PLSR) model and the LOD of CPF residues in soil was found to be as low as 0.025 mg/kg. The relative standard deviation (RSD) was less than 3.69% and the recovery ranged from 97.5 to 103.3%. In summary, this simple method for AuNPs fabrication with ultrasensitivity and reproducibility confirms that the SERS is highly promising for the determination of soil pesticide residues.
机译:毒死rif(CPF)被广泛用于农业中农作物病虫害的预防和控制。但是,农药的不合理利用不仅造成环境污染,而且威胁到人类健康。与传统的测定土壤中农药的技术相比,表面增强拉曼光谱(SERS)在超灵敏和化学分析中显示出巨大潜力。因此,本文首次报道了一种简单的合成大小不同的金纳米颗粒(AuNPs)的方法,该纳米颗粒首次用作SERS底物,用于测定土壤中的CPF残留。结果表明,CERS的SERS特征峰强度与AuNPs的粒径具有良好的线性相关性,R 2 为0.9973。此外,制备的AuNPs具有极高的超敏性,可重复性和化学稳定性,并且发现CPF的检出限(LOD)低至10μg/ L。此外,通过制备的AuNPs,SERS很容易观察到浓度为0.01〜10 mg / L,SERS强度与R 2 为0.985呈良好的线性关系。使用偏最小二乘回归(PLSR)模型进行CPF预测的测定系数(Rp 2 )达到0.977,发现土壤中CPF残留量的LOD低至0.025 mg / kg。相对标准偏差(RSD)小于3.69%,回收率范围为97.5至103.3%。总而言之,这种具有超高灵敏度和可重复性的AuNPs制备简单方法证实了SERS在测定土壤农药残留方面非常有前途。

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