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首页> 外文期刊>Food Chemistry >Quantification of deltamethrin residues in wheat by Ag@ZnO NFs-based surface-enhanced Raman spectroscopy coupling chemometric models
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Quantification of deltamethrin residues in wheat by Ag@ZnO NFs-based surface-enhanced Raman spectroscopy coupling chemometric models

机译:基于AG的ZnO NFS基表面增强拉曼光谱耦合化学模型的小麦溴氰菊酯的定量

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Deltamethrin, one of the most toxic pyrethroids, is commonly used to inhibit pests in wheat. However, the trace levels of deltamethrin in wheat is alarming to human health. In this study, surface-enhanced Raman spectroscopy (SERS)-active silver nanoparticles-plated-zinc oxide nanoflowers (Ag@ZnO NFs) nano-sensor were employed for rapid and sensitive quantification of deltamethrin in wheat. To sufficiently utilize the chemical-related information in SERS spectra, various spectral pretreatment and chemometric models were studied. The mean centering (MC) coupling successive projection algorithm-partial least squares regression (SPA-PLS) provided optimal predictive performance (correlation coefficient of prediction (Rp) = 0.9736 and residual predictive deviation (RPD) = 4.75). The proposed method achieved the limit of detection (LOD) = 0.16 mu g.kg(-1), the recovery of predicted results was in the range of 96.33-109.17% and the relative standard deviation (RSD) was 5%. The overall results suggested that SERS based Ag@ZnO NFs combined with MC-SPA-PLS could be an easy and efficient method to quantify deltamethrin residue levels in wheat.
机译:迄今为止,迄今为止最具毒的拟除虫菊酯之一,通常用于抑制小麦的害虫。然而,小麦中溴氰菊酯的痕量水平对人体健康令人震惊。在该研究中,采用表面增强的拉曼光谱(SERS) - 活性银纳米粒子(Ag @ ZnO NFS)纳米传感器用于小麦的溴氰菊酯的快速和敏感量化。为了充分利用SERS光谱中的化学相关信息,研究了各种光谱预处理和化学计量模型。平均定心(MC)耦合连续投影算法 - 局部最小二乘回归(SPA-PL)提供了最佳的预测性能(预测相关系数(RP)= 0.9736和残差预测偏差(RPD)= 4.75)。所提出的方法实现了检测极限(LOD)=0.16μg.kg(-1),预测结果的回收率在96.33-109.17%的范围内,相对标准偏差(RSD)为<5%。总体结果表明,基于SERS的AG @ ZnO NFS与MC-SPA-PLS相结合,可以是一种易于有效的方法,可以在小麦中量化迄今为止迄今为止的溴氰菊酯残留水平。

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