首页> 外文会议>National Congress of the Mexican Society of Electrochemistry >Optimization of a Differential Pulse Voltammetric Methodology for the Quantification of Diclofenac Using Paste Electrodes and Carbon Nanotubes
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Optimization of a Differential Pulse Voltammetric Methodology for the Quantification of Diclofenac Using Paste Electrodes and Carbon Nanotubes

机译:用粘贴电极和碳纳米管定量Diclofenac定量差分脉冲伏安法的优化

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In this work we present the development of an optimized methodology based on differential pulse voltammetry for diclofenac quantification, using electrochemically activated carbon paste electrodes and multi-walled nanotubes carbon paste electrodes. Under the optimized experimental conditions, diclofenac presented linear response over the range of 10~(-10) to 10~(-4) M for both electrodes. The lower detection limits found were 0.001 and 0.29 μM for the paste electrodes with and without nanotubes respectively. The effect of common interferences on diclofenac current response was investigated. Finally the proposed methodology was validated comparing the results obtained measuring the concentration of diclofenac in pharmaceutical samples with those obtained with the reference methodology.
机译:在这项工作中,我们使用电化学活性炭浆料量化和多壁纳米管碳浆料电极来呈现基于差分脉冲伏安法的优化方法的开发。在优化的实验条件下,对于两个电极,Diclofenac呈现在10〜(-10)至10〜(-4)m的范围内的线性响应。较低的检测限限对于粘贴电极,分别具有和没有纳米管的糊电极为0.001和0.29μm。研究了常见干扰对双氯芬克电流反应的影响。最后,验证了所提出的方法,比较了测量药物样品中双氯芬酸浓度的结果与参考方法获得的结果。

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