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首页> 外文期刊>Electrochimica Acta >Simultaneous voltammetric determination of ascorbic acid, acetaminophen and isoniazid using thionine immobilized multi-walled carbon nanotube modified carbon paste electrode
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Simultaneous voltammetric determination of ascorbic acid, acetaminophen and isoniazid using thionine immobilized multi-walled carbon nanotube modified carbon paste electrode

机译:硫氨酸固定化多壁碳纳米管修饰碳糊电极同时伏安法测定抗坏血酸,对乙酰氨基酚和异烟肼

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摘要

A carbon paste electrode (CPE) modified with thionine immobilized on multi-walled carbon nanotube (MWCNT), was prepared for simultaneous determination of ascorbic acid (AA) and acetaminophen (AC) in the presence of isoniazid (INZ). The electrochemical response characteristics of the modified electrode toward AA, AC and INZ were investigated by cyclic and differential pulse voltammetry (CV and DPV). The results showed an efficient catalytic role for the electro-oxidation of AA and AC, leading to a remarkable peak resolution (~303 mV) for two compounds. On the other hand, the presence of INZ, which is considered as important drug interference for AC, does not affect the voltammetric responses of these pharmaceuticals. The mechanism of the modified electrode was analyzed by monitoring the CVs at various potential sweep rates and pHs of the buffer solutions. Under the optimum conditions, the calibration curves for AA, AC and INZ were obtained in the range of 1 × 10~(-6) to 1 × 10~(-4) M, 1 × 10~(-7) to 1 × 10~(-4) M and 1 × 10~(-6) to 1 × 10~(-4) M, respectively. The prepared modified electrode shows several advantages such as simple preparation method, high sensitivity, long-time stability, ease of preparation and regeneration of the electrode surface by simple polishing and excellent reproducibility. The proposed method was applied to determination of AA, AC and INZ in commercial drugs and in plasma samples and the obtained results were satisfactory.
机译:制备了固定在多壁碳纳米管(MWCNT)上的硫氨酸修饰的碳糊电极(CPE),用于在异烟肼(INZ)存在下同时测定抗坏血酸(AA)和对乙酰氨基酚(AC)。通过循环和差分脉冲伏安法(CV和DPV)研究了修饰电极对AA,AC和INZ的电化学响应特性。结果表明,AA和AC的电氧化具有有效的催化作用,导致两种化合物具有显着的峰分离度(〜303 mV)。另一方面,INZ的存在被认为是对AC的重要药物干扰,它不影响这些药物的伏安响应。通过监测各种电位扫描速率和缓冲溶液pH值下的CV,分析了修饰电极的机理。在最佳条件下,获得AA,AC和INZ的校准曲线的范围为1×10〜(-6)至1×10〜(-4)M,1×10〜(-7)至1× 10〜(-4)M和1×10〜(-6)至1×10〜(-4)M.所制备的修饰电极具有制备方法简单,灵敏度高,长期稳定性好,易于抛光,电极表面易于制备和再生,重现性好等优点。该方法用于市售药品和血浆样品中AA,AC和INZ的测定,结果令人满意。

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