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Electrochemical feasibility study of methyl parathion determination on graphite-modified basal plane pyrolytic graphite electrode

机译:石墨修饰基面热解石墨电极上甲基对硫磷测定的电化学可行性研究

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摘要

A low-cost electrochemical method was developed for the determination of trace-level of methyl parathion (MP) based on the properties of graphite-modified basal plane pyrolytic graphite electrode (graphite-bppg). A combination of graphite-bppg with square-wave voltammetric (SWV) analysis resulted in an original, sensitive and selective electrochemical method for determination of MP pesticide in drinking water. The electrode was constructed and the electrochemical behavior of MP was studied. Immobilization is achieved via film modification from dispersing graphite powder in deionized water and through pipeting a small volume onto the electrode surface allowing the solvent to volatilize. The strong affinity of the graphite modifier for the phosphorous group of the MP allowed the deposition of a significant amount of MP in less than 60 seconds. The cyclic voltammetric results indicate that the graphite-bppg electrode can enhance sensitivity in current intensity towards the quasi-reversible redox peaks of the products of the cathodic reduction of the nitro group at negative potential (peak I = 0.077 V and peak II = -0.062 V) and that the cathodic irreversible peak (peak III = -0.586 V) in comparison with bare bppg electrode and is also adsorption controlled process. Under optimized conditions, the concentration range and detection limit for MP pesticide are respectively 79.0 to 263.3 μmol L-1 and 3.00 μmol L-1. The proposed method was successfully applied to MP determination in drinking water and the performance of this electrochemical sensor has been evaluated in terms of analytical figures of merit.
机译:基于石墨修饰的基面热解石墨电极(graphite-bppg)的性能,开发了一种低成本的电化学方法测定痕量的甲基对硫磷(MP)。石墨基bppg与方波伏安(SWV)分析相结合形成了一种测定饮用水中MP农药的原始,灵敏和选择性的电化学方法。构造电极并研究了MP的电化学行为。固定是通过将​​石墨粉分散在去离子水中,然后将少量的管子吸到电极表面,使溶剂挥发而进行的膜改性来实现的。石墨改性剂对MP的磷基团具有很强的亲和力,可以在不到60秒的时间内沉积出大量的MP。循环伏安结果表明,石墨-bppg电极可以增强电流强度对负电位下硝基被阴极还原的产物的准可逆氧化还原峰的敏感性(峰值I = 0.077 V,峰II = -0.062 V),并且与裸bppg电极相比,阴极的不可逆峰(峰III = -0.586 V)也是吸附控制的过程。在最佳条件下,MP农药的浓度范围和检出限分别为79.0至263.3μmolL-1和3.00μmolL-1。所提出的方法已成功地应用于饮用水中MP的测定,并且已经根据品质因数对这种电化学传感器的性能进行了评估。

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