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Nanomaterial-Based Carbon Paste Electrodes for Voltammetric Determination of Naproxen in Presence of Its Degradation Products

机译:基于纳米材料的碳糊电极,用于在其降解产物的存在下含有萘普生的伏安测定

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摘要

The present work describes a novel, simple, and fast electroanalytical methodology for naproxen (NAP) determination in pharmaceutical formulations and biological fluids in the presence of its degradation products. Carbon paste electrodes (CPEs) modified with different carbon nanomaterials, namely, glassy carbon powder (GCE), multiwall carbon nanotubes (MWCNTs), single-walled carbon nanotubes (SWCNTs), graphene nanosheets (Gr), and graphene oxides (GO) were tested. Comprehensive studies were performed on the electrode matrix composition including the nature of the pasting liquids, pH, carbon nanomaterials, and mode of electrode modification. Two anodic oxidation peaks were recorded at 0.890 and 1.18 V in 1 × 10−1 mol·L−1 phosphate buffer solution at pH 6. Oxidation of naproxen (NAP) is an irreversible diffusion-controlled process. Calibration plots were rectilinear in the concentration ranging from 0.067 to 1.0 µg·mL−1 with correlation coefficient 0.9979. Photodegradation of NAP resulted in disappearance of the oxidation peak at 1.18 V, allowing simultaneous determination of NAP in presence of its degradation product. The achieved high sensitivity and selectivity suggest the application of the proposed protocol for naproxen determination in pharmaceutical preparations and human blood plasma.
机译:本作者描述了在其降解产物存在下药物制剂和生物流体中的萘普克森(NAP)测定的新颖,简单,快速的电解方法。用不同的碳纳米材料改性碳糊电极(CPE),即玻璃碳粉末(GCE),多壁碳纳米管(MWCNT),单壁碳纳米管(SWCNTs),石墨烯纳米片(GR)和石墨烯氧化物(GO)是测试。对电极基质组合物进行综合研究,包括粘贴液体,pH,碳纳米材料和电极改性模式的性质。在pH6的1×10-1mol·L-1磷酸盐缓冲溶液中以0.890和1.18V记录两种阳极氧化峰。萘普伦(NAP)的氧化是不可逆的扩散控制的方法。校准图在浓度的浓度范围为0.067至1.0μg·ml-1,具有相关系数0.9979。午睡的光降解导致氧化峰消失为1.18 V,允许在其降解产物存在下同时测定午点。实现的高敏感性和选择性表明所提出的方案在药物制剂和人血浆中的萘普生测定的应用。

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