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An Electrochemiluminescence Sensor Based on Nafion/Magnetic Fe3O4 Nanocrystals Modified Electrode for the Determination of Bisphenol A in Environmental Water Samples

机译:基于Nafion /磁性Fe3O4纳米晶修饰电极的电化学发光传感器测定环境水样中的双酚A

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摘要

The well-dispersive and superparamagnetic Fe3O4-nanocrystals (Fe3O4-NCs) which could significantly enhance the anodic electrochemiluminescence (ECL) behavior of luminol, were synthesized in this study. Compared to ZnS, ZnSe, CdS and CdTe nanoparticles, the strongest anodic ECL signals were obtained at +1.6 V on the Fe3O4-NCs coated glassy carbon electrode. The ECL spectra revealed that the strong ECL resonance energy transfer occurred between luminol and Fe3O4-NCs. Furthermore, under the optimized ECL experimental conditions, such as the amount of Fe3O4-NCs, the concentration of luminol and the pH of supporting electrolyte, BPA exhibited a stronger distinct ECL quenching effect than its structural analogs and a highly selective and sensitive ECL sensor for the determination of bisphenol A (BPA) was developed based on the Fe3O4-NCs. A good linear relationship was found between the ECL intensity and the increased BPA concentration within 0.01–5.0 mg/L, with a correlation coefficient of 0.9972. The detection limit was 0.66 × 10−3 mg/L. Good recoveries between 96.0% and 105.0% with a relative standard deviation of less than 4.8% were obtained in real water samples. The proposed ECL sensor can be successfully employed to BPA detection in environmental aqueous samples.
机译:本研究合成了分散性良好的超顺磁性Fe 3 O 4-纳米晶体(Fe 3 O 4 -NCs),该晶体可显着增强鲁米诺的阳极电化学发光(ECL)行为。与ZnS,ZnSe,CdS和CdTe纳米颗粒相比,Fe3O4-NCs涂层玻璃碳电极在+1.6 V时获得最强的阳极ECL信号。 ECL光谱表明,鲁米诺和Fe3O4-NCs之间发生了很强的ECL共振能量转移。此外,在优化的ECL实验条件下,例如Fe3O4-NCs的量,鲁米诺的浓度和支持电解质的pH,BPA与其结构类似物相比具有更强的独特的ECL猝灭作用,并且具有高度选择性和灵敏的ECL传感器。基于Fe3O4-NCs开发了双酚A(BPA)的测定方法。在ECL强度和0.01-5.0 mg / L之间的BPA浓度增加之间发现了良好的线性关系,相关系数为0.9972。检出限为0.66×10 -3 mg / L。在真实水样中,回收率在96.0%至105.0%之间,相对标准偏差小于4.8%。所提出的ECL传感器可以成功地用于环境水性样品中的BPA检测。

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