School of Chemistry, Damghan University, Damghan 3671641167, Iran.
Anal Methods. 2022 Sep 22;14(36):3493-3500. doi: 10.1039/d2ay00852a.
In this research study, a novel, facile, and affordable method is presented for the synthesis of a Ag/S/S-RGO nanocomposite. The resulting new nanocomposite was identified by FT-IR, XRD, FESEM, XPS, BET and EDX and employed as a rapid and effective adsorbent with acceptable absorption capacity for the analysis of various pesticides by dispersive solid-phase microextraction combined with ion mobility spectrometry. The main experimental parameters of the method were optimized such as the type of desorption solvent, pH of the sample solution, type of buffer, amount of the sorbent (Ag/S/S-RGO), sorption/desorption time, Under the optimized conditions, linear dynamic ranges of 0.5-110.0, 1.0-110.0, and 0.8-90.0 ng mL were achieved, with limits of detection of 0.25, 0.35, and 0.25 ng mL for simazine, alachlor, and haloxyfop, respectively. The relative standard deviations (RSD%) were obtained as <5.0%. Eventually, the method was utilized for the simultaneous determination of simazine, alachlor, and haloxyfop in environmental and agricultural samples with recoveries between 95.0 and 104.6%.
在这项研究中,提出了一种新颖、简便且经济的方法来合成 Ag/S/S-RGO 纳米复合材料。通过 FT-IR、XRD、FESEM、XPS、BET 和 EDX 对得到的新型纳米复合材料进行了鉴定,并将其用作一种快速有效的吸附剂,具有可接受的吸附容量,可用于分析各种农药,采用分散固相微萃取结合离子迁移谱法。对该方法的主要实验参数进行了优化,如解吸溶剂的类型、样品溶液的 pH 值、缓冲液的类型、吸附剂(Ag/S/S-RGO)的用量、吸附/解吸时间等。在优化条件下,获得了嗪草酮、甲草胺和氟吡草酮的线性动态范围分别为 0.5-110.0、1.0-110.0 和 0.8-90.0ng/mL,检测限分别为 0.25、0.35 和 0.25ng/mL。相对标准偏差(RSD%)<5.0%。最终,该方法用于环境和农业样品中嗪草酮、甲草胺和氟吡草酮的同时测定,回收率在 95.0%至 104.6%之间。