首页> 外文期刊>Electroanalysis >Incorporation of Tetrazolium Blue (TB)/Gold Nanoparticles (GNPs) into Carbon Paste Electrode: Application as an Electrochemical Sensor for the Sensitive and Selective Determination of Sotalol in Micellar Medium
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Incorporation of Tetrazolium Blue (TB)/Gold Nanoparticles (GNPs) into Carbon Paste Electrode: Application as an Electrochemical Sensor for the Sensitive and Selective Determination of Sotalol in Micellar Medium

机译:将四唑鎓蓝(TB)/金纳米颗粒(GNP)掺入碳浆料电极:作为电化学传感器的应用,用于胶束培养基中的Sotalol敏感和选择性测定

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摘要

The electrochemical oxidation of Sotalol (SOT) based on Tetrazolium Blue (TB)/gold nanoparticles (GNPs)-modified carbon paste electrodes (CPE) have been studied in the presence of sodium lauryl sulphate (SLS). Cyclic voltammetry (CV), differential pulse voltammetry (DPV), chronoamperometry and electrochemical impedance spectroscopy (EIS) techniques have all been utilized within this study. GNPs and TB have a synergetic effect-giving rise to highly improved electrochemical responses and provide an advantageous platform for the basis of an electrochemical sensor with excellent performance. The experimental parameters, electrodeposition time, pH and scan rate have all been examined and optimized. The sensing of SOT via DPV is found to exhibit a wide linear dynamic range of 1.0 x 10(-7)-7.5 x 10(-) M-4 in pH 2. LOD and LOQ were calculated and found to correspond to 2.5 x 10(-8) M and 8.3 x 10(-8) M, respectively. The suggested sensor has been used successfully for SOT determination in pharmaceutical samples and human urine as real samples. Satisfactory recoveries of analyte from these samples are demonstrated indicating that the suggested sensor is highly suitable for clinical analysis, quality control and a routine determination of SOT in pharmaceutical formulations.
机译:在月桂基硫酸钠(SLS)存在下,研究了基于四唑鎓蓝(TB)/金纳米颗粒(GNP)的碳纳米粒子(GNP)的碳纳米粒子(GNPS) - 制度碳浆料(CPE)的电化学氧化。循环伏安法(CV),差分脉冲伏安法(DPV),计时率和电化学阻抗光谱(EIS)在本研究中被使用。 GNP和TB具有增量效应 - 引起高度改善的电化学响应,并为具有优异性能的电化学传感器提供有利的平台。所有都检查和优化了实验参数,电沉积时间,pH和扫描速率。发现通过DPV的SOT的感测显示在pH 2中的1.0×10(-7)-7.5×10( - )m-4的宽线性动态范围为1.0×10( - )m-4。LOD和LOQ进行了计算,发现对应于2.5 x 10 (-8)M和8.3 x 10(-8)m。建议的传感器已成功用于药物样品和人类尿液中的SOT测定作为真实样品。证明了来自这些样品的分析物的令人满意的回收率表明建议的传感器非常适合于临床分析,质量控制和药物制剂中的SOT的常规测定。

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