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Electrochemical Determination of Copper(II) in Water Samples Using a Novel Ion-Selective Electrode Based on a Graphite Oxide-Imprinted Polymer Composite

机译:基于石墨氧化物压印聚合物复合材料,使用新型离子选择性电极电化学法测定水样中的铜(II)

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摘要

A novel copper(II)-selective electrode based on graphite oxide/imprinted polymer composite was developed for the electrochemical monitoring of copper(II) (Cu2+) ions. The electrode exhibited highly selective potentiometric response to Cu2+ with respect to common alkaline, alkaline earth and heavy metal cations. The composite composition studies indicated that the most suitable composite composition performing the most promising potentiometric properties was 20.0% ionophore (Cu2+-ion imprinted polymer), 10.0% paraffin oil, 5.0% multiwalled carbon nanotubes, and 65.0% graphite oxide. The fabricated electrode exhibited a linear response to Cu2+ over the concentration range of 1.0 x 10(-6)-1.0 x 10(-1) M (correlation coefficient of 0.9998) with a sensitivity of 26.1 +/- 0.9 mV decade(-1). The detection limit of the fabricated electrode was determined to be 4.0 x 10(-7) M. The electrode worked well in the pH range of 4.0-8.0. The electrode had stable, reversible and fast potentiometric response (3 s). In addition, the electrode had a lifetime of more than 1 year. The analytical applications of the proposed electrode were performed using as an indicator electrode for the potentiometric titration of Cu2+ with ethylene diamine tetraacetic acid solution and for the determination of Cu2+ of spiked river, dam, and tap water samples. The obtained results for potentiometric titration and water samples were satisfactory.
机译:为基于石墨氧化物/压印聚合物复合材料的新型铜(II) - 选择性电极用于铜(II)(Cu2 +)离子的电化学监测。对于普通碱性,碱土和重金属阳离子,电极对Cu2 +表现出高度选择性的电位响应。复合组合物研究表明,具有最有前景的电位性质的最合适的复合组合物是20.0%离子载体(Cu 2 + ION压印的聚合物),10.0%石蜡,5.0%多壁碳纳米管和65.0%石墨氧化物。制造电极对Cu 2 +的浓度范围显示为1.0×10( - 6)-1.0×10×10(-1)m(0.9998)的浓度范围,灵敏度为26.1 +/- 0.9 mV十年(-1 )。测定制造电极的检出限为4.0×10(-7)M.电极在4.0-8.0的pH范围内工作良好。电极具有稳定,可逆且快速的电位响应(3秒)。此外,电极的寿命超过1年。使用用作Cu2 +电位滴定的指示电极进行所提出的电极的分析应用,并用乙二胺四乙酸溶液测定尖刺河,坝和自来水样品的Cu2 +。所获得的电位滴定和水样的结果令人满意。

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