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首页> 外文期刊>Acta Chimica Slovenica >Low-level Electrochemical Analysis of Ketoconazole by Sepiolite Nanoparticles Modified Sensor in Shampoo Sample
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Low-level Electrochemical Analysis of Ketoconazole by Sepiolite Nanoparticles Modified Sensor in Shampoo Sample

机译:SPAMHOO样品中Sepiolite纳米粒子改性传感器的酮康唑的低级电化学分析

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In this study, the nano-sepiolite modified carbon paste electrode (CCPE) was prepared for the determination of ketoconazole (KC). The effects of pH, the proportion of the electrode modifier, deposition potential, and deposition time were investigated. Ketoconazole shows one irreversible oxidation peak at about the potential value of 0.6–0.7 V at different pH values. CV studies show that the modified electrode performed a catalytic effect on the peak signal of KC compared to the bare electrode. This catalytic behavior of CCPE was used for the development of a sensitive detection method. The impact of pH and scan rates on the anodic peak potentials and currents were examined, and the scan rate results show that the oxidation behavior of KC was controlled by the adsorption process at the CCPE surface. Therefore, adsorptive stripping differential pulse voltammetry (AdsDPV) and adsorptive stripping square wave voltammetry (AdsSWV) methods were developed for KC analysis. The two different linear ranges were obtained as (0.1-1.0) nM and (3.0-10.0) nM for AdsDPV, and (0.1–10.0) nM and (3.0–10.0) nM for AdsSWV, respectively. The detection (LOD) and quantification (LOQ) limits were found to be 0.017 nM and 0.056 nM for AdsDPV and 0.025 nM and 0.083 nM for AdsSWV, respectively. Besides, the proposed new sensor has obtained very high recovery values in the analysis of KC in the pharmaceutical shampoo.
机译:在该研究中,制备纳米海泡石改性的碳糊电极(CCPE)以确定酮康唑(KC)。研究了pH,电极改性剂,沉积电位和沉积时间的比例的影响。酮康唑在不同pH值下塔的潜在值为0.6-0.7V的潜在值,显示出一种不可逆的氧化峰。 CV研究表明,与裸电极相比,改性电极对KC的峰值信号进行了催化作用。 CCPE的这种催化行为用于开发敏感检测方法。研究了pH和扫描速率对阳极峰电位和电流的影响,扫描速率结果表明,KC的氧化行为由CCPE表面的吸附过程控制。因此,为KC分析开发了吸附剥离差分脉冲伏安法(ADSDPV)和吸附剥离方波伏安法(ADSSWV)方法。对于ADSDPV的(0.1-1.0)Nm和(3.0-10.0)Nm,ADSSWV的(0.1-10.0)NM和(3.0-10.0)nm,获得两种不同的线性范围。发现检测(LOD)和定量(LOQ)限制为ADSDPV为0.017nm和0.056nm,分别用于ADSSWV的0.025nm和0.083nm。此外,所提出的新传感器在药物洗发水中的分析中获得了非常高的回收率。

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