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首页> 外文期刊>Analytical Letters >Subsecond FFT-adsorptive Voltammetric Technique as a Novel Method for Subnano Level Monitoring of Piroxicam in its Tablets and Bulk Form at Au Microelectrode in Flowing Solutions
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Subsecond FFT-adsorptive Voltammetric Technique as a Novel Method for Subnano Level Monitoring of Piroxicam in its Tablets and Bulk Form at Au Microelectrode in Flowing Solutions

机译:亚秒级FFT吸附伏安技术作为一种新方法,用于在流动溶液中的金微电极上对吡罗昔康的片剂和散装形式的亚吡咯烷酮进行亚纳水平监测

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摘要

In this work a novel method for the determination of piroxicam in flow-injection systems has been developed.A system using fast Fourier transform continuous cyclic voltammetry(FFTCV),at a gold microelectrode in flowing solution,was used for determining piroxicam in its pharmaceutical formulations.The developed technique is very simple,precise,accurate,time saving,and economical,compared to all of the previously reported methods.The effects of various parameters on the sensitivity of the method were investigated.The best performance was obtained with a pH value of 2,scan rate value of 40 V/s,accumulation potential of(400)mV,and accumulation time of 0.4 s.The proposed method has some advantages over other reported methods,such as,no need for the removal of oxygen from the test solution,a picomolar detection limit,and finally that the method is fast enough for the determination of any such compound,in a wide variety of chromatographic methods.To obtain a sensitive determination,the integration range of currents was set for all the potential scan ranges,including oxidation and reduction of the Au surface electrode,while performing the measurements. The potential waveform, consisting of the potential steps for cleaning, accumulation, and potential ramp of analyte, was applied on an Au disk microelectrode (with a 12.5 mu m in radius) in a continuous way. The method was linear over the concentration range of 1.5-364000 pg/ml (r = 0.998) with a limit of detection and quantitation of 0.33 and 1.5 pg/ml, respectively. The method has the requisite accuracy, sensitivity, precision, and selectivity to assay piroxicam in tablets.
机译:在这项工作中,开发了一种测定流动注射系统中吡罗昔康的新方法。使用快速傅里叶变换连续循环伏安法(FFTCV)在流动溶液中的金微电极上测定吡罗昔康的系统与以前报道的所有方法相比,该技术非常简单,准确,准确,省时且经济。研究了各种参数对方法灵敏度的影响。在pH值下可获得最佳性能2,扫描速率值为40 V / s,累积电势为(400)mV,累积时间为0.4 s。与其他已报道的方法相比,该方法具有一些优势,例如无需从仪器中去除氧气测试溶液,皮摩尔检测极限,最后证明该方法在各种色谱方法中都足够快,足以测定任何此类化合物。要获得灵敏的测定方法,请积分在执行测量时,为所有电位扫描范围(包括Au表面电极的氧化和还原)设置电流的最大范围。以连续方式将由清洗,积累和分析物的电位阶跃组成的电位波形施加到Au圆盘微电极(半径为12.5μm)上。该方法在1.5-364000 pg / ml的浓度范围内是线性的(r = 0.998),检出限和定量限分别为0.33和1.5 pg / ml。该方法具有测定片剂中吡罗昔康所需的准确性,灵敏性,精密度和选择性。

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