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首页> 外文期刊>Applied Organometallic Chemistry >Application of 2-(benzyliminomethyl)-6-methoxy-4-(4-methoxyphenyl-azo)phenol in construction of ion-selective PVC membrane electrode for determination of copper (II) in mineral water sample
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Application of 2-(benzyliminomethyl)-6-methoxy-4-(4-methoxyphenyl-azo)phenol in construction of ion-selective PVC membrane electrode for determination of copper (II) in mineral water sample

机译:2-(苄基甲基)-6-甲氧基-4-(4-甲氧基苯基-AZO)苯酚在离子选择性PVC膜电极施工中的应用,用于测定矿泉水样品中的铜(II)

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摘要

The potentiometric characteristics of a new Cu2+-selective electrode based on 2-(benzyliminomethyl)-6-methoxy-4-(4-methoxyphenyl-azo) phenol as an efficient ionophore has been evaluated. The effects of influential parameters on the potentiometric responses such as the amount of plasticizer, the amount of ionophore, pH of the sample solution, and the effect of coexisting ions on the electrode signal were subsequently investigated. The selectivity of the electrode was assessed by calculating the selectivity coefficients using the matched potential method. The optimum ratio of the amount of materials required for the preparation of the electrode was found to be 1.7: 32.1: 64.2: 2.0 corresponding to carboxylated PVC, dimethyl sebacate as solvent mediators, potassium tetrakis (p-chlorophenyl) borate as the anion localizing agent, and ionophore, respectively. The electrode had a fast response (7s) as well as a satisfactory Nernstian slope (29.26 +/- 0.91 mV/decade) to Cu2+ over a wide concentration range of 2.0x10(-6)- 5.0x10(-2) M with a low detection limit of 5.9x10(-7) M. The developed sensor was successfully used for the potentiometric titration of Cu2+ ion with EDTA and subsequently, efficient determination of this metal ion in a mineral water sample was performed.
机译:已经评估了基于2-(苄基甲基)-6-甲氧基-4-(4-甲氧基苯基-AZO)酚作为高效离子载体的新型Cu2 +式 - 选择电极的电位特性。随后研究了随后研究了影响力响应对诸如增塑剂的量,离子溶液的量的电位反应的影响,以及在电极信号上共存离子的效果。通过使用匹配的电位方法计算选择性系数来评估电极的选择性。发现电极制备所需的材料的最佳比率为1.7:32.1:64.2:2.0,对应于羧化PVC,癸二酸二甲酯作为溶剂介质,硼酸钾(对氯苯基)作为阴离子定位剂硼酸钾和离子载体。电极具有快速响应(7s)以及令人满意的Nernstian斜率(29.26 +/- 0.91mV / depade),在2.0×10(-6) - 5.0x10(-2)m的宽浓度范围内。低检测限5.9x10(-7)M.发育传感器成功地用于Cu2 +离子的电位滴定,随后,进行矿泉水样品中该金属离子的有效测定。

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