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Electrochemical study of 5-nitroquinoline using carbon film electrode and its determination in model samples of drinking and river water

机译:碳膜电极对5-硝基喹啉的电化学研究及其在饮用水和河水模型样品中的测定

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This work is focused on the determination of submicromolar concentrations of 5-nitroquinoline (5-NQ) using differential pulse voltammetry (DPV) and direct current voltammetry (DCV) at a novel type of carbon film electrode (CFE). The advantages of CFE are its wide potential window in both cathodic and anodic regions (ca 3 V span), high sensitivity, and low noise of measurements. The other advantages of CFE are the possibility to quickly and easily renew the electrode surface and also non-toxicity for environment compared to mercury electrodes. Calibration dependences in deionized water are linear from 0.4 to 100 A mu mol dm(-3), with limit of quantification (LOQ) 1 A mu mol dm(-3) using DCV, and from 0.2 to 100 A mu mol dm(-3), with LOQ 0.4 A mu mol dm(-3) using DPV. The DPV method was verified for model samples of drinking and river water. The calibration dependences were linear in the concentration ranges from 0.2 to 10 A mu mol dm(-3) for both matrices, with LOQ 0.2 A mu mol dm(-3) for drinking water and LOQ 0.6 A mu mol dm(-3) for river water, respectively. This work has proved the usability of CFE for submicromolar determination of 5-NQ based on cathodic reduction of the present nitro group.
机译:这项工作的重点是在新型碳膜电极(CFE)上使用差分脉冲伏安法(DPV)和直流伏安法(DCV)测定5-硝基喹啉(5-NQ)的亚微摩尔浓度。 CFE的优势在于其在阴极和阳极区域(ca 3 V跨度)的潜在窗口宽,灵敏度高且测量噪声低。与汞电极相比,CFE的其他优点是可以快速轻松地更新电极表面,并且对环境无毒。去离子水的校准依赖性在0.4至100 Aμmol dm(-3)范围内呈线性关系,使用DCV时的定量极限(LOQ)为1 Aμmol dm(-3),在0.2至100 Aμmol dm(-)之间呈线性关系3),使用DPV的LOQ为0.4 Aμmol dm(-3)。 DPV方法用于饮用水和河水的模型样品。两种基质的浓度范围在0.2至10 A mu mol dm(-3)范围内呈线性关系,饮用水的LOQ为0.2 A mu mol dm(-3),LOQ为0.6 Aμmol dm(-3)。分别用于河水。这项工作已经证明,基于目前硝基的阴极还原,CFE可用于亚微摩尔测定5-NQ。

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