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NITRATE-SELECTIVE ELECTRODE DEVELOPED BY ELECTROCHEMICALLY MEDIATED IMPRINTING DOPING OF POLYPYRROLE

机译:电化学介导的聚吡咯浸渍法开发的硝酸选择电极

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Nitrate-selective electrodes have been developed by electropolymerizing pyrrole onto glassy-carbon electrodes in the presence of NaNO3. Electrochemical variables were used to optimize the potentiometric response of the electrodes and to maximize the selectivity for nitrate over potentially interferent anions. Calibration plots with near-Nernstian slopes for nitrate were observed, -56 +/- 1 mV/decade (n = 18), over a linear range of four decades of concentration (5.0 x 10(-5)-0.50 M nitrate). The electrodes had detection limits of (2 +/- 1) x 10(-5) M nitrate (n = 18). The commercially available nitrate-selective electrodes suffer from interference by lipophilic anions, such as perchlorate and iodide. Compared to these electrodes, the polypyrrole-based nitrate electrodes demonstrated improved selectivity coefficients for perchlorate and iodide by as much as 4 orders of magnitude (K-NO3-,ClO4-(pot) = 5.7 X 10(-2); K-NO3-,I-(pot) = 5.1 X 10(-2)) An electrochemically mediated templating mechanism is proposed to explain the observed high selectivity for nitrate.
机译:硝酸盐选择性电极是通过在NaNO3存在下将吡咯电聚合到玻璃碳电极上而开发的。电化学变量用于优化电极的电位响应,并使硝酸盐对潜在干扰阴离子的选择性最大化。在四十年浓度范围(5.0 x 10(-5)-0.50 M硝酸盐)的线性范围内,观察到了硝酸盐的近似能斯特斜率的标定图,-56 +/- 1 mV /十年(n = 18)。电极的检测极限为(2 +/- 1)x 10(-5)M硝酸盐(n = 18)。市售的硝酸盐选择电极受到亲脂性阴离子如高氯酸盐和碘化物的干扰。与这些电极相比,基于聚吡咯的硝酸盐电极对高氯酸盐和碘化物的选择性系数提高了4个数量级(K-NO3-,ClO4-(pot)= 5.7 X 10(-2); K-NO3 -,I-(pot)= 5.1 X 10(-2))提出了一种电化学介导的模板机理来解释观察到的对硝酸盐的高选择性。

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