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Fe3O4@PDA@MnO2 core-shell nanocomposites for sensitive electrochemical detection of trace Pb(II) in water

机译:FE3O4 @ PDA @ MNO2核 - 壳纳米复合材料用于痕量PB(II)水中的痕量电化学检测

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In this study, Fe3O4@PDA@MnO2 core-shell magnetic nanocomposites were synthesized for the first time, and used to enrich target analyte to construct an electrochemical sensor for sensitive detection of trace Pb(II) in the environmental samples. A dense polydopamine (PDA) coating was firstly formed on the surface of Fe3O4 to ensure high stability because the developedmethod is employed under strongly acidic conditions. Then a high adsorption capacity MnO2 shell can be simply introduced to the surface of the PDA as a result of the redox activity between PDA and KMnO4. Differential pulse voltammetry (DPV) was applied for determining target metal ions. Chemical and electrochemical factors, including quantity of Fe3O4@PDA@MnO2 nanocomposites, preconcentration solutions pH, preconcentration time and supporting electrolytes, were optimized. Under excellent conditions, the designed sensor demonstrated a linear response to Pb(II) within the range of 0.1-150 mu g L-1 and with a detection limit of 0.03 mu g L-1. The proposed methodology exhibited excellent performance in selectivity, sensitivity and long-term stability, and was also successfully applied to determine Pb(II) in the real water samples. This study suggested that Fe3O4@PDA@MnO2 nanocomposites are a better alternative to Pb(II) analysis resulting from its low cost, low toxicity, strong adsorption, and good reproducibility. (C) 2020 Elsevier B.V. All rights reserved.
机译:在这项研究中,四氧化三铁@ PDA @的MnO 2的芯 - 壳磁纳米复合材料的第一次合成,并且用于富集目标分析物以构建用于环境样品中痕量铅的灵敏检测(II)的电化学传感器。的致密聚多巴胺(PDA)涂层首先形成四氧化三铁的表面上,以确保高的稳定性,因为该developedmethod是强酸性的条件下使用。再高的吸附容量的MnO 2外壳可以简单地引入到PDA的表面PDA和高锰酸钾之间的氧化还原活性的结果。微分脉冲伏安法(DPV)施加用于确定目标的金属离子。化学和电化学因素,包括四氧化三铁@ PDA @的MnO 2纳米复合材料的量,预浓缩溶液的pH值,富集时间和支持电解质,进行了优化。下具有优异的条件下,设计的传感器证明铅0.1-150亩克L-1的范围内,并用0.03微米克L-1的检测极限的线性响应(II)。所建议的方法表现出选择性,灵敏度和长期稳定性优良的性能,和也被成功地应用于确定的Pb(II)的实际水样英寸这项研究表明,四氧化三铁@ PDA @的MnO 2纳米复合材料是从它的低成本,低毒性,强吸附,和良好的再现性得到的Pb(II)分析一个更好的选择。 (c)2020 Elsevier B.v.保留所有权利。

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