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Electrochemical quantification of fluoxetine in pharmaceutical formulation using carbon nanoparticles

机译:碳纳米粒子对药物制剂中氟西汀的电化学定量

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A sensitive electrochemical sensor is formed by a carbon nanoparticles (CNPs)/glassy carbon electrode for the determination of antidepressant drug fluoxetine in pharmaceutical formulation. The dependence of fluoxetine electro-oxidation currents and potentials on pH concentration and the potential scan rate was studied. Scanning electron microscopy was used for characterisation of the CNPs. The porous layer of the CNPs improved the electroactive surface area and led to a significant increasing in the peak currents, based on the diffusion within a nanoporous film. The best electrochemical response was obtained from differential pulse voltammograms in the buffer solution (pH 9.0). Linear calibration graphs were obtained in 1–25 ;C;M with %RSD values from 0.3 to 5.7 and the detection limit of 0.4 ;C;M (S/N = 3). The CNPs modified electrode was successfully applied for fluoxetine determination in capsules and the results showed sufficient precision and achieved a mean recovery accuracy of 99.06%.
机译:灵敏的电化学传感器由碳纳米颗粒(CNP)/玻璃碳电极形成,用于测定药物制剂中的抗抑郁药氟西汀。研究了氟西汀电氧化电流和电势对pH浓度和电势扫描速率的依赖性。扫描电子显微镜用于表征CNP。基于纳米多孔膜内的扩散,CNP的多孔层改善了电活性表面积并导致峰值电流显着增加。从缓冲溶液(pH 9.0)中的微分脉冲伏安图获得最佳的电化学响应。线性校准图在1–25; C; M中获得,%RSD值从0.3到5.7,检出限为0.4; C; M(S / N = 3)。 CNPs修饰电极成功用于胶囊中氟西汀的测定,结果显示出足够的精度,平均回收率达到99.06%。

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