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Fabrication of a Cu(II)-Selective Electrode in thePolyvinyl Chloride Matrix Utilizing Mechanochemically SynthesizedRhodamine 6g as an Ionophore

机译:铜(II)选择电极的制造机械化学合成的聚氯乙烯基质罗丹明6g作为离子载体

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摘要

A Cu(II)-selective electrode has been fabricated by utilizing a mechanochemically synthesized copper-specific ionophore “L” embedded in a poly(vinyl chloride) membrane. 2-Nitrophenyloctylether and sodium tetraphenylborate have been used as a plasticizer and as a solvent mediator, respectively, and found to be enhancing the sensitivity of the fabricated ion-selective electrode (ISE). A range of membranes (S1–S7) with varying compositions were casted and investigated in ISE. Results revealed an excellent Nernstian response of 29.38 ± 0.55 mV/dec for the ISE S6. The fabricated ISE operates well in the pH window 4.0–7.5, and the limit of detection was found to be 5 μM (0.3 ppm). Quick response time (15 s), long shelf-life, and selectivity (on the order of 10–4 and 10–5) over a number of interfering cations enabled S6 promising for real off laboratory sample analysis and can be employed to detect copper ion in various industrial as well as biological and environmental samples. To demonstrate the practical application of these ISE, the Cu concentration in the digested printed circuit boardhas been estimated using the standard calibration plot. The fabricatedISE has been regenerated through extracting copper by chelating withethylenediaminetetraacetic acid.
机译:通过利用机械化学合成的嵌入聚(氯乙烯)膜中的铜特异性离子载体“ L”来制造Cu(II)选择电极。 2-硝基苯基辛基醚和四苯基硼酸钠已分别用作增塑剂和溶剂介体,并发现可提高所制造的离子选择电极(ISE)的灵敏度。在ISE中浇铸了一系列具有不同成分的膜(S1-S7)并进行了研究。结果显示,ISE S6的Nernstian响应出色,为29.38±0.55 mV / dec。制成的ISE在4.0-7.5的pH范围内运行良好,检测限为5μM(0.3 ppm)。启用了许多干扰阳离子的快速响应时间(15 s),较长的保存期限和选择性(约10 –4 和10 –5 )有望用于实际实验室外样品分析,并可用于检测各种工业以及生物和环境样品中的铜离子。为了演示这些ISE的实际应用,摘要消化后的印刷电路板中的Cu浓度已使用标准校准图进行了估算。捏造的ISE是通过与铜螯合来提取铜而再生的乙二胺四乙酸。

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