Anadolu University, Faculty of Science, Department of Chemistry, 26470 Eskisehir, Turkey.
Talanta. 2018 Sep 1;187:125-132. doi: 10.1016/j.talanta.2018.05.018. Epub 2018 May 7.
In this study, an electrochemical sensor was developed for the determination of propham (PRO) in potato, human urine and river water samples based on the over-oxidized poly(thiophene) modified pencil graphite [PG/p(Thp)-Ox] electrode. Adsorptive stripping differential pulse voltammetry was used as a voltammetric method. The PG/p(Thp)-Ox electrode increased the oxidation peak current of PRO 30 times according to bare PG. Electrochemical polymerization and over-oxidation conditions were deeply optimized to increase the sensitivity of PG/p(Thp)-Ox. Characterization of PG/p(Thp)-Ox was performed via scanning electron microscopy and cyclic voltammetry analysis. Oxidation peak current value of PRO linearly increased with the concentration of PRO in the ranges of 0.005-1.0 μM and 2.0-15.0 μM. A very low limit of detection value (1.0 nM) was obtained. Intra-day and inter-day reproducibility of the PG/p(Thp)-Ox were determined as 2.96% (N: 10) and 4.77% (10 days), respectively. Satisfactory recovery values (98.07-104.4%) were observed with PG/p(Thp)-Ox electrode during the analysis of PRO in PRO-spiked potato, urine and river water samples. The results show that the PG/p(Thp)-Ox could be used safely in the determination of PRO.
在这项研究中,基于过氧化聚(噻吩)修饰的铅笔石墨电极[PG/p(Thp)-Ox],开发了一种用于测定马铃薯、人尿和河水样品中丙草胺(PRO)的电化学传感器。采用吸附溶出差分脉冲伏安法作为伏安法。与裸 PG 相比,PG/p(Thp)-Ox 电极将 PRO 的氧化峰电流提高了 30 倍。对 PG/p(Thp)-Ox 的电化学聚合和过氧化条件进行了深入优化,以提高其灵敏度。通过扫描电子显微镜和循环伏安分析对 PG/p(Thp)-Ox 进行了表征。PRO 的氧化峰电流值在 0.005-1.0 μM 和 2.0-15.0 μM 的范围内与 PRO 的浓度呈线性增加。获得了非常低的检测限值(1.0 nM)。PG/p(Thp)-Ox 的日内和日间重现性分别为 2.96%(N:10)和 4.77%(10 天)。在 PRO 掺杂的马铃薯、尿液和河水中 PRO 的分析中,PG/p(Thp)-Ox 电极观察到令人满意的回收率值(98.07-104.4%)。结果表明,PG/p(Thp)-Ox 可安全用于 PRO 的测定。