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首页> 外文期刊>Journal of analytical chemistry >Determination of fluoxetine in pharmaceutical preparations and biological samples using potentiometric sensors based on polymeric membranes
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Determination of fluoxetine in pharmaceutical preparations and biological samples using potentiometric sensors based on polymeric membranes

机译:基于聚合物膜的电位传感器测定药物制剂和生物样品中的氟西汀

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The construction and general performance of four novel potentiometric membrane sensors for the determination of fluoxetine have been described. The sensors are based on the formation of the ion association complex of fluoxetine with sodium tetraphenylborate and phosphotungstic acid as electroactive materialles, dispersed in a PVC matrix with dibuthyl sebacate (or diethyl sebacate) as a plasticizer. These sensors exhibit fast, stable and near-Nernstian response for the monocharged fluoxetine cation over wide concentration range from 3.0 × 10~(?6) to 1.2 × 10~(?2) M and pH 4.0–7.5. No interferences are caused by many inorganic and organic species. Direct potentiometric determinations of 5–100 μg/mL of fluoxetine in drug and urine samples show good recovery of fluoxetine. The developed membrane electrodes have been used as an end point indicator electrode; the potentiometric titration of fluoxetine with sodium tetraphenylborate as a titrant has been monitored.
机译:已经描述了用于测定氟西汀的四种新型电位计膜传感器的结构和一般性能。传感器基于氟西汀与四苯硼酸钠和磷钨酸作为电活性物质的离子缔合复合物的形成,分散在PVC基质中,癸二酸二丁酯(或癸二酸二乙酯)作为增塑剂。这些传感器在3.0×10〜(?6)至1.2×10〜(?2)M和pH 4.0-7.5的宽浓度范围内,对单电荷氟西汀阳离子表现出快速,稳定和接近能斯特的响应。许多无机和有机物质都不会引起干扰。直接电位法测定药物和尿液样品中氟西汀的浓度为5–100μg/ mL,表明氟西汀具有良好的回收率。显影的膜电极已被用作终点指示电极。已监测了用四苯硼酸钠作为滴定剂的氟西汀的电位滴定。

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