分子印迹电聚合物修饰碳糊电极伏安法测定扑热息痛

Q3 Chemistry
I. W. T. Aryasa, I. Noviandri
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引用次数: 1

摘要

对乙酰氨基酚是一种常用的解热镇痛药,用于退烧和头痛。药物中对乙酰氨基酚剂量的测定非常重要,因为过量服用会导致暴发性肝坏死和其他毒性作用。因此,有必要精确测量患者服用扑热息痛的剂量,以免造成伤害。已经提出了许多用于测定扑热息痛剂量的分析方法。其中一种方法是在过去二十年中发展起来的。通常,电分析法,特别是伏安法,特别适用于测定对乙酰氨基酚的剂量,尤其是在修饰电极中。本研究旨在利用分子印迹聚合物(MIP)对碳糊电极进行改性。使用MIP的显著优点是优越的稳定性、低成本和易于制备。采用循环伏安法和3-氨基苯酚单体在负载电解质(HClO4)中,在对乙酰氨基酚分子存在和不存在的情况下制备了聚(3-氨基苯酚)膜。在循环伏安图上观察到对乙酰氨基酚的作用,其中在对乙酰氨基苯酚存在的情况下,聚(3-氨基苯酚)的氧化峰电位从0.948到0.780V转移到更多的阴极电位。Ipa在0.01–0.1 mM范围内与浓度呈良好的线性关系,检测限为4,63μM。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Voltammetric Determination of Paracetamol with Carbon Paste Electrode Modified with Molecularly Imprinted Electropolymer
Paracetamol is a commom analgesic and antipyretic drug which used for reliefing fever and head ache. The determination of paracetamol dose in pharmaceuticals is very important, becauce an overdose can cause fulminating hepatic necrosis and other toxic effects. Therefore, it is necessary to measure the dose of paracetamol for the patient with precision to avoid harm. Many analytical methodologies have been proposed for determination of paracetamol dose. One of the methods was developed in the past two decades. Generally, electroanalytical approach especially voltammetry method is particularly design for determination of paracetamol dose especially in modifying electrode. This study aims to modified carbon paste electrode with molecularly imprinted polymer (MIP). Significant advantages of using MIP are the superior stability, low cost and ease of preparation. The poly (3-aminiophenol) film was prepared by cyclic voltammetry method and 3-aminophenol monomer in supporting electrolyte (HClO4) with and whitout presence of paracetamol molecule. The effect of paracetamol was seen at cyclic voltammogram was founded, where oxidation peak potential of poly (3-aminophenol) shifted to more cathodic potentials from 0.948 to 0.780 V, in presence of paracetamol. The Ipa showed a good linear relationship with concentration in the range 0.01–0.1 mM, and the detection limit was 4,63 μM.
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来源期刊
Molekul
Molekul Chemistry-Chemistry (all)
CiteScore
1.30
自引率
0.00%
发文量
31
审稿时长
4 weeks
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