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Bare and Polymer-Coated Indium Tin Oxide as Working Electrodes for Manganese Cathodic Stripping Voltammetry

机译:裸露和聚合物涂层的氧化铟锡作为锰阴极溶出伏安法的工作电极

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摘要

Though an essential metal in the body, manganese (Mn) has a number of health implications when found in excess that are magnified by chronic exposure. These health complications include neurotoxicity, memory loss, infertility in males, and development of a neurologic psychiatric disorder- manganism. Thus, trace detection in environmental samples is increasingly important. Few electrode materials are able to reach the negative reductive potential of Mn required for anodic stripping voltammetry (ASV), so cathodic stripping voltammetry (CSV) has been shown to be a viable alternative. We demonstrate Mn CSV using an indium tin oxide (ITO) working electrode both bare and coated with a sulfonated charge selective polymer film, polystyrene-block-poly(ethylene-ran-butylene)-block-polystyrene-sulfonate (SSEBS). ITO itself proved to be an excellent electrode material for Mn CSV, achieving a calculated detection limit of 5 nM (0.3 ppb) with a deposition time of 3 min. Coating the ITO with the SSEBS polymer was found to increase the sensitivity and lower the detection limit to 1 nM (0.06 ppb). This polymer modified electrode offers excellent selectivity for Mn as no interferences were observed from other metal ions tested (Zn2+, Cd2+, Pb2+, In3+, Sb3+, Al3+, Ba2+, Co2+, Cu2+, Ni3+, Bi3+, and Sn2+) except Fe2+, which was found to interfere with the analytical signal for Mn2+ at a ratio 20:1 (Fe2+:Mn2+). The applicability of this procedure to the analysis of tap, river, and pond water samples was demonstrated. This simple, sensitive analytical method using ITO and SSEBS-ITO could be applied to a number of electroactive transition metals detectable by CSV.
机译:锰(Mn)虽然是人体必需的金属,但如果过量摄入,对健康的影响会被长期暴露所放大。这些健康并发症包括神经毒性,记忆力减退,男性不育以及神经性精神疾病-锰症的发展。因此,环境样品中的痕量检测变得越来越重要。很少有电极材料能够达到阳极溶出伏安法(ASV)所需的Mn负还原电位,因此,阴极溶出伏安法(CSV)已被证明是可行的替代方法。我们展示了使用裸露的氧化铟锡(ITO)工作电极并涂有磺化电荷选择性聚合物膜,聚苯乙烯嵌段聚(乙烯-亚丁基)嵌段聚苯乙烯磺酸盐(SSEBS)的Mn CSV。 ITO本身被证明是Mn CSV的极佳电极材料,在3分钟的沉积时间内达到了5 nM(0.3 ppb)的计算检测极限。发现用SSEBS聚合物涂覆ITO可以提高灵敏度,并将检测极限降低到1 nM(0.06 ppb)。该聚合物修饰电极对Mn具有出色的选择性,因为未观察到其他测试的金属离子(Zn 2 + ,Cd 2 + ,Pb 2 + ,In 3 + ,Sb 3 + ,Al 3 + ,Ba 2 + ,Co 2 + ,Cu 2 + ,Ni 3 + ,Bi 3 + 和Sn 2 + ),但Fe 2 + 除外,发现它以20:1的比例干扰Mn 2 + 的分析信号(Fe 2 + :Mn 2 + )。证明了该方法在自来水,河水和池塘水样分析中的适用性。这种使用ITO和SSEBS-ITO的简单,灵敏的分析方法可以应用于可通过CSV检测到的多种电活性过渡金属。

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