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首页> 外文期刊>Bulletin of the Korean Chemical Society >Portable Amperometric Perchlorate Selective Sensors with Microhole Array-water/organic Gel Interfaces
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Portable Amperometric Perchlorate Selective Sensors with Microhole Array-water/organic Gel Interfaces

机译:具有微孔阵列-水/有机凝胶界面的便携式安培高氯酸盐选择性传感器

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摘要

A novel stick-shaped portable sensing device featuring a microhole array interface between the polyvinyl-chloride-2-nitrophenyloctylether (PVC-NPOE) gel and water phase was developed for in-situ sensing of perchlorate ions in real water samples. Perchlorate sensitive sensing responses were obtained based on measuring the current changes with respect to the assisted transfer reaction of perchlorate ions by a perchlorate selective ligand namely, bis(dibenzoylmethanato)Ni(II) (Ni(DBM)2) across the polarized microhole array interface. Cyclic voltammetry was used to characterize the assisted transfer reaction of perchlorate ions by the Ni(DBM)2 ligand when using the portable sensing device. The current response for the transfer of perchlorate anions by Ni(DBM)2 across the micro-water/gel interface linearly increased as a function of the perchlorate ion concentration. The technique of differential pulse stripping voltammetry was also utilized to improve the sensitivity of the perchlorate anion detection down to 10 ppb. This was acquired by preconcentrating perchlorate anions in the gel layer by means of holding the ion transfer potential at 0 mV (vs. Ag/AgCl) for 30 s followed by stripping the complexed perchlorate ion with the ligand. The effect of various potential interfering anions on the perchlorate sensor was also investigated and showed an excellent selectivity over Br~-,NO2~-, NO3~-, CO3~(2-), CH3COO~- and SO4~(2-) ions. As a final demonstration, some regional water samples from the Sincheon river in Daegu city were analyzed and the data was verified with that of ion chromatography (IC) analysis from one of the Korean-certified water quality evaluation centers.
机译:开发了一种新颖的棒状便携式传感装置,该装置具有在聚氯乙烯-2-硝基苯基辛基醚(PVC-NPOE)凝胶和水相之间的微孔阵列界面,用于原位检测真实水样中的高氯酸根离子。高氯酸盐敏感的传感响应是基于通过极化的微孔阵列界面测量高氯酸盐选择性配体即双(二苯甲酰甲基氨基)Ni(II)(Ni(DBM)2)对高氯酸盐离子辅助转移反应的电流变化而获得的。 。使用便携式传感设备时,使用循环伏安法来表征Ni(DBM)2配体对高氯酸根离子的辅助转移反应。 Ni(DBM)2穿过微水/凝胶界面传递高氯酸根阴离子的电流响应随高氯酸根离子浓度的增加而线性增加。还利用差分脉冲溶出伏安法技术将高氯酸根阴离子检测的灵敏度降低至10 ppb。通过将离子传递电势保持在0 mV(vs. Ag / AgCl)30 s在凝胶层中预浓缩高氯酸根阴离子,然后用配体剥离络合的高氯酸根离子来获得。还研究了各种潜在干扰阴离子对高氯酸根传感器的影响,并显示出对Br〜-,NO2〜-,NO3〜-,CO3〜(2-),CH3COO〜-和SO4〜(2-)离子的优异选择性。 。作为最后的演示,对大邱市新村河的部分区域水样进行了分析,并使用了韩国认证的水质评估中心之一的离子色谱(IC)分析对数据进行了验证。

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