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首页> 外文期刊>Analytical methods >A highly sensitive electrochemical sensor based on gold nanoparticles/multiwall carbon nanotubes-modified glassy carbon electrode for selective determination of traces of atenolol
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A highly sensitive electrochemical sensor based on gold nanoparticles/multiwall carbon nanotubes-modified glassy carbon electrode for selective determination of traces of atenolol

机译:基于金纳米颗粒/多壁碳纳米管修饰的玻碳电极的高灵敏度电化学传感器,用于选择性测定阿替洛尔的痕量

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In the present study, the electrochemical oxidation of atenolol (ATN) at gold nanoparticles (GNPs)/multiwall carbon nanotubes (MWCNTs)-modified glassy carbon electrode (GCE) was studied using cyclic voltammetry, differential pulse voltammetry and chronoamperometry. The synergetic effects of GNPs and MWCNTs highly improved electrochemical response and sensitivity of the sensor. The effect of experimental parameters, including amount of MWCNTs, GNPs, electrodeposition time, solution pH and scan rate on the sensor response, was evaluated. Under optimum experimental conditions, the respective linear calibration range, detection limit and sensitivity of the sensor were obtained as 1a€“60 ??M, 0.5 ??M and 350 nA ??Ma?’1 for differential pulse voltammetry and 0.1a€“1 ??M, 59 nM and 4.405 ??A ??Ma?’1 for chronoamperometry. The proposed sensor was successfully applied to the determination of atenolol in pharmaceutical samples, human urine and blood serum as real samples. The method was also applied to monitor ATN in urine samples of a dosage-received volunteer. Satisfactory recoveries of analyte from samples clearly revealed that the proposed sensor is well applicable to clinical analysis, quality control and a routine determination of drugs in pharmaceutical formulations.
机译:在本研究中,使用循环伏安法,微分脉冲伏安法和计时电流法研究了金纳米颗粒(GNPs)/多壁碳纳米管(MWCNTs)修饰的玻碳电极(GCE)上阿替洛尔(ATN)的电化学氧化。 GNP和MWCNT的协同作用极大地改善了传感器的电化学响应和灵敏度。评估了实验参数的影响,包括MWCNT的数量,GNP的数量,电沉积时间,溶液的pH值和扫描速率对传感器响应的影响。在最佳实验条件下,传感器的线性校准范围,检测极限和灵敏度分别为1a?60?M,0.5?M和350 nA?Ma?'1(对于差分脉冲伏安法)和0.1a?。 “ 1?M,59 nM和4.405?A?Ma?'1用于计时电流法。所提出的传感器已成功地用于测定药物样品,人尿和血清中的阿替洛尔作为真实样品。该方法还用于监测接受剂量的志愿者尿液样品中的ATN。从样品中回收令人满意的分析物清楚地表明,该传感器非常适用于临床分析,质量控制和药物制剂中药物的常规测定。

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