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An amperometric nitrate sensor based on well-aligned cone-shaped polypyrrole-nanorods

机译:基于良好排列的锥形聚吡咯-纳诺德的安培硝酸盐传感器

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An amperometric nitrate sensor is developed based on a well-aligned cone-shaped polypyrrole (PPy)-nanorod modified glassy carbon (GC) electrode, in which the three-dimensional interconnected porous PPy-nanorod matrix is electrochemically polymerized onto the GC substrate. The electrochemical reduction peak of PPy is employed to quantify nitrate, since the electrochemical redox process of PPy is accompanied by the doping/de-doping of nitrate. The influences of several experimental parameters on the electrochemical response to nitrate detection, including the pH value of the electropolymerization electrolyte, the potential and time of polymerization, the accumulation potential and duration, are thoroughly investigated. The optimal experimental parameters are then verified. Under the optimized conditions, a linear range from 1.0 ?— 10a?’4 to 5.0 ?— 10a?’3 mol La?’1 and a detection limit of 5.0 ?— 10a?’5 mol La?’1 (signal to noise ratio = S/N = 3) are estimated. The corresponding nitrate sensor shows good stability and satisfactory resistance to the interferences of some cations and anions.
机译:基于良好排列的锥形聚吡咯(PPy)-纳诺洛德修饰玻碳(GC)电极,开发出一种电流型硝酸盐传感器,其中三维互连的多孔PPy-纳诺洛德基体电化学聚合到GC基板上。 PPy的电化学还原峰用于定量硝酸盐,因为PPy的电化学氧化还原过程伴随着硝酸盐的掺杂/去掺杂。彻底研究了电沉积电解质的pH值,聚合电势和时间,聚合电势和持续时间等几个实验参数对硝酸盐电化学响应的影响。然后验证最佳实验参数。在优化的条件下,线性范围为1.0?-10a?'4至5.0?-10a?'3 mol La?'1,检测极限为5.0?-10a?'5 mol La?'1(信号噪声)比率= S / N = 3)。相应的硝酸盐传感器显示出良好的稳定性和令人满意的抗某些阳离子和阴离子干扰的能力。

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