Faculty of Chemistry, Shahid Beheshti University, G.C., Evin, Tehran, 1983969411, Iran.
Department of Chemistry, Faculty of Science, Qom University, Qom, 3716146611, Iran.
Mikrochim Acta. 2018 Feb 1;185(2):150. doi: 10.1007/s00604-018-2692-y.
The authors describe a new sorbent for amitraz and teflubenzuron pesticides. It consists of a platinum wire coated with polypyrrole-coated ZnO nanorods. The nanocomposite was prepared by a two-step process. In the first step, oriented ZnO nanorods were hydrothermally grown in situ on a platinum wire. Subsequently, oxidative vapor phase polymerization of pyrrole was performed on FeCl-impregnated ZnO nanorods to give a porous polypyrrole film. The organic/inorganic nanocomposite synthesized through hydrothermal deposition and chemical vapor deposition polymerization yields material with attractive properties. The coated wire was applied to solid-phase microextraction of amitraz (in the form of 2,4-dimethylaniline resulting from the hydrolysis of amitraz) and teflubenzuron. The effects of extraction temperature, extraction time, sample pH value and salt concentration were optimized. The analytes 2,4-dimethylaniline and teflubenzuron were then quantified by GC-MS. Under optimum conditions, the LODs range between 0.1 and 0.15 ng.mL. Relative standard deviations at two concentration are <8.3% for intraday precision and <10.3% for inter-day precision. In all cases, the fiber to fiber reproducibility is <12.2%. For both analytes the linear dynamic ranges are 0.5-300 ng.mL. The procedure was successfully applied to the analysis of spiked agricultural water samples. Graphical abstract A novel inorganic/organic hybrid nanocomposite was synthesized through in situ hydrothermal deposition of ZnO nanorods and ten placing a thin layer of polypyrrole on them by chemical vapor deposition polymerization. This nanocomposite was applied to fabricate a solid-phase microextraction fiber for the extraction of amitraz and teflubenzuron pesticides residue from agricultural samples prior to their quantitation by GC-MS.
作者描述了一种用于咪鲜胺和氟虫脲农药的新型吸附剂。它由涂有聚吡咯包覆的 ZnO 纳米棒的铂丝组成。该纳米复合材料通过两步法制备。第一步,在铂丝上原位水热生长取向 ZnO 纳米棒。随后,在 FeCl 浸渍的 ZnO 纳米棒上进行吡咯的氧化气相聚合,得到多孔聚吡咯膜。通过水热沉积和化学气相沉积聚合合成的有机/无机纳米复合材料具有吸引人的性质。涂覆的金属丝应用于固相微萃取咪鲜胺(由咪鲜胺水解生成的 2,4-二甲基苯胺的形式)和氟虫脲。优化了萃取温度、萃取时间、样品 pH 值和盐浓度的影响。然后通过 GC-MS 对分析物 2,4-二甲基苯胺和氟虫脲进行定量。在最佳条件下,LOD 范围在 0.1 到 0.15ng.mL 之间。日内精密度的相对标准偏差<8.3%,日间精密度的相对标准偏差<10.3%。在所有情况下,纤维间的重现性<12.2%。对于两种分析物,线性动态范围为 0.5-300ng.mL。该方法成功应用于加标农业水样的分析。