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Gold Nanoparticle-Coated ZrO2-Nanofiber Surface as a SERS-Active Substrate for Trace Detection of Pesticide Residue

机译:纳米金包覆的ZrO2-纳米纤维表面作为SERS活性底物用于农药残留的痕量检测

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摘要

Trace detection of common pesticide residue is necessary to assure safety of fruit and vegetables, given that the potential health risk to consumers is attributed to the contamination of the sources. A simple, rapid and effective means of finding the residue is however required for household purposes. In recent years, the technique in association with surface-enhanced Raman scattering (SERS) has been well developed in particular for trace detection of target molecules. Herein, gold nanoparticles (Au NPs) were integrated with sol-gel spin-coated Zirconia nanofibers (ZrO2 NFs) as a chemically stable substrate and used for SERS application. The morphologies of Au NPs/ZrO2 NFs were adjusted by the precursor concentrations (_X, X = 0.05–0.5 M) and the effect of SERS on Au NPs/ZrO2 NFs_X was evaluated by different Raman laser wavelengths using rhodamine 6G as the probe molecule at low concentrations. The target pesticides, phosmet (P1), carbaryl (C1), permethrin (P2) and cypermethrin (C2) were thereafter tested and analyzed. Au NPs/ZrO2 NFs_0.3 exhibited an enhancement factor of 2.1 × 107, which could detect P1, C1, P2 and C2 at the concentrations down to 10−8, 10−7, 10−7 and 10−6 M, respectively. High selectivity to the organophosphates was also found. As the pesticides were dip-coated on an apple and then measured on the diluted juice containing sliced apple peels, the characteristic peaks of each pesticide could be clearly identified. It is thus promising to use NPs/ZrO2 NFs_0.3 as a novel SERS-active substrate for trace detection of pesticide residue upon, for example, fruits or vegetables.
机译:鉴于对消费者的潜在健康风险归因于来源的污染,必须对痕量的常见农药残留物进行检测以确保水果和蔬菜的安全。然而,出于家庭目的,需要一种简单,快速且有效的发现残留物的方法。近年来,结合表面增强拉曼散射(SERS)的技术已经得到了很好的发展,特别是用于目标分子的痕量检测。本文中,金纳米颗粒(Au NPs)与溶胶-凝胶旋涂氧化锆纳米纤维(ZrO2 NFs)集成为化学稳定的底物,并用于SERS应用。通过前体浓度(_X,X = 0.05-0.5 M)调整Au NPs / ZrO2 NF的形态,并使用若丹明6G作为探针分子,通过不同的拉曼激光波长评估SERS对Au NPs / ZrO2 NFs_X的影响。低浓度。此后测试并分析了目标农药,磷酸酯(P1),西维因(C1),氯菊酯(P2)和氯氰菊酯(C2)。 Au NPs / ZrO2 NFs_0.3的增强因子为2.1×10 7 ,可以检测低至10 -8 的P1,C1,P2和C2,分别为10 −7 ,10 −7 和10 −6 M。还发现了对有机磷酸盐的高选择性。由于将农药浸涂在苹果上,然后在稀释后的含切片苹果皮的果汁中进行测定,因此可以清楚地识别出每种农药的特征峰。因此,有望将NPs / ZrO2 NFs_0.3用作新型SERS活性底物,用于痕量检测水果或蔬菜上的农药残留。

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