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Development of a Flow Injection System for Differential Pulse Amperometry and Its Application for Diazepam Determination

机译:用于差分脉冲倍流的流动喷射系统的开发及其对DiazePAM测定的应用

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This work presents the development of a flow injection system for differential pulse amperometry (DPA) for diazepam determination in the presence of oxygen. The thin flow cell consisted of the bare glassy carbon electrode, reference silver/silver chloride, and stainless steel as the auxiliary electrode. Electrochemical reduction of diazepam (DZP) was characterised by cyclic voltammetry. Azomethine reduction peak was used for DZP quantification. The detector response was linear in the range 20–250 µmol/dm3 of diazepam, with a calculated detection limit of 3.83 µg/cm3. Intraday and interday precision were 1.53 and 10.8%, respectively. The method was applied on three beverage samples, energetic drink, and two different beer samples, and obtained recoveries were from 93.65 up to 104.96%. The throughoutput of the method was up to 90 analyses per hour.
机译:这项工作介绍了在氧气存在下进行差分脉冲Amperometry(DPA)的流动喷射系统的开发。薄的流动电池由裸露的玻碳电极,参考银/氯化银,也包括作为辅助电极的不锈钢。用循环伏安法表征了Diazepam(DZP)的电化学还原。氮杂甲胺还原峰用于DZP定量。探测器响应在Diazepam的20-250μmol/ dm3的范围内是线性的,计算出的检测限为3.83μg/ cm3。日内和白天精度分别为1.53和10.8%。该方法适用于三种饮料样品,精力饮料和两种不同的啤酒样品,得到的回收率为93.65,高达104.96%。该方法的吞吐量高达90分分析。

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