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首页> 外文期刊>Journal of Solid State Electrochemistry >Flow-injection potentiometric applications of solid state Li+ selective electrode in biological and pharmaceutical samples
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Flow-injection potentiometric applications of solid state Li+ selective electrode in biological and pharmaceutical samples

机译:固态Li + 选择性电极在生物和药物样品中的流动注射电位法应用

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摘要

A solid state polyvinyl chloride (PVC) membrane Li+-selective electrode was prepared and used as a detector in a low-dead volume flow through cell for the determination of Li+ in pharmaceutical formulations and human serum samples. The potentiometric performance characteristics of the electrode were calculated under the optimized flow conditions. The electrode had near-Nernstian behavior in the concentration range of 0.1–100 mM (R 2 = 0.9981) with a slope of 61.34 mV decade−1 and detection limit of 0.080 mM. The relative standard deviation of the electrode response for eight replicate measurements of 100, 10, and 1 mM Li+ was 0.43%, 0.45%, and 0.99%, respectively. The designed flow-through cell detector system revealed sampling rates of approximately 70 injections per hour. Flow injection potentiometry (FIP) results obtained for the pharmaceutical formulations were in good harmony with the atomic emission spectrophotometry results. However, the electrode could not be used successfully for the direct analysis of real serum samples in FIP.
机译:制备了固态聚氯乙烯(PVC)膜Li + 选择电极,并将其用作低死体积流过池中的检测器,用于测定Li + 在药物制剂和人血清样品中。在最佳流动条件下计算电极的电位性能特征。电极在0.1–100 mM(R 2 = 0.9981)的浓度范围内具有近能谱行为,斜率为61.34 mV十进制 -1 ,检出限为0.080毫米八个重复测量100、10和1 mM Li + 的电极响应的相对标准偏差分别为0.43%,0.45%和0.99%。设计的流通池检测器系统显示每小时大约70次进样的采样率。药物制剂的流动注射电位法(FIP)结果与原子发射分光光度法结果非常吻合。但是,该电极不能成功地用于直接分析FIP中的真实血清样品。

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