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Determination of inorganic mercury using a polyaniline and polyaniline-methylene blue coated screen-printed carbon electrode

机译:使用聚苯胺和聚苯胺-亚甲基蓝涂层丝网印刷碳电极测定无机汞

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Inorganic mercury ions (Hg~(2+)) in laboratory prepared solutions were determined with a screen-printed carbon electrode (SPCE) coated with a polyaniline-methylene blue (PANI-MB) polymer layer. The structure and properties of the PANI-MB polymer layer were compared to that of normal polyaniline (PANI) in order to elucidate the structure of the PANI-MB layer. The electrically-conducting polymers were prepared by electrochemical polymerisation of monomer solutions of aniline, and mixed solutions of aniline with methylene blue onto respective screen-printed carbon electrodes (SPCEs). Scanning Electron Microscopy (SEM) analyses of the SPCE polymer coated electrodes have shown that nanostructured materials have formed with the diameters of the PANI nanoclusters and PANI-MB nanorods at approximately 200 nm. Anodic stripping voltammetry (ASV) was used to evaluate a solution composed of 1×10~(-6)MHg~(2+), in the presence of the SPCE/PANI-MB polymer sensor electrode. The Hg~(2+) ions were determined as follows: (ⅰ) pre-concentration and reduction on the modified electrode surface and (ⅱ) subsequent stripping from the electrode surface during the positive potential sweep. The experimental conditions optimised for Hg~(2+) determination included the supporting electrolyte concentration and the accumulation time. The results obtained have shown that the SPCE/PANI-MB polymer sensor electrode operates optimally at a pH 2, with the supporting electrolyte concentration at 0.5M HCl. A linear calibration curve was found to be in the range of 1 × 10~(-8)M to 1 × 10~(-5)M Hg~(2+) after 120 s of pre-concentration. The detection limit was calculated and found to be 54.27 ± 3.28 μgL~(-1) of Hg~(2+). The results have also shown that a conducting polymer modified SPCE sensor electrode can be used as an alternative transducer for the voltammetric stripping and analysis of inorganic Hg~(2+) ions.
机译:实验室制备的溶液中的无机汞离子(Hg〜(2+))用丝网印刷的碳电极(SPCE)涂覆,该电极上涂有聚苯胺-亚甲基蓝(PANI-MB)聚合物层。为了阐明PANI-MB层的结构,将PANI-MB聚合物层的结构和性质与普通聚苯胺(PANI)的结构和性质进行了比较。导电聚合物是通过苯胺的单体溶液的电化学聚合,以及苯胺与亚甲基蓝的混合溶液在各自的丝网印刷碳电极(SPCE)上的电化学聚合而制备的。对SPCE聚合物涂层电极的扫描电子显微镜(SEM)分析表明,已形成纳米结构材料,其PANI纳米团簇和PANI-MB纳米棒的直径约为200 nm。在SPCE / PANI-MB聚合物传感器电极存在的情况下,采用阳极溶出伏安法(ASV)评估由1×10〜(-6)MHg〜(2+)组成的溶液。 Hg〜(2+)离子的测定方法如下:(ⅰ)在修饰电极表面上进行预浓缩和还原,以及(ⅱ)在正电势扫描过程中随后从电极表面剥离。测定Hg〜(2+)的最佳实验条件包括支持电解质的浓度和累积时间。获得的结果表明,SPCE / PANI-MB聚合物传感器电极在pH 2时最佳运行,支持电解质的浓度为0.5M HCl。预浓缩120 s后,线性校准曲线的范围为1×10〜(-8)M至1×10〜(-5)M Hg〜(2+)。计算出的检出限为Hg〜(2+)的54.27±3.28μgL〜(-1)。结果还表明,导电聚合物修饰的SPCE传感器电极可以用作伏安剥离和分析无机Hg〜(2+)离子的替代换能器。

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