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Development of a novel automatic potentiometric system for determination of selenium and its application in pharmaceutical formulations and anodic slime

机译:新型自动测定硒的电位系统的开发及其在药物制剂和阳极泥中的应用

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摘要

Poly(vinyl chloride) polymeric membrane sensors containing Sn(IV) phthalocyanine dichloride (SnPC) and Co(II) phthalocyanine (CoPC) as novel electroactive materials dispersed in o-nitrophenyl octylether (o-NPOE) as a plasticizer are examined potentiometrically with respect to their response toward selenite (SeO32-) ions. Fast Nernstian response for SeO32- ions over the concentration ranges 7.0 X 10(-6) - 1.0 X 10(-3) and 8.0 x 10(-6) - 1.0 X 10(-3) Mol L-1 at pH 3.5 - 8.5 with lower detection limit of 5. 0 X 10(-6) and 8.0 x 10(-6) mol L-1 and calibration slopes of - 25.4 and - 29.7 mV decade(-1) are obtained with SnPC and CoPC based membrane sensors, respectively. The proposed sensors reveals by the modified separate solution method (MSSM) a good selectivity over different anions which differ significantly from the classical Hofmeister series. A segmented sandwich membrane method is used to determine complex formation constants of the ionophores in situe in the solvent polymeric sensing membranes. Membrane incorporating CoPC in a tubular flow detector is used in a two channels flow injection set up for continuous monitoring of selenite at a frequency of ca. 50 samples h(-1). Direct determination of selenium in pharmaceutical formulations and anodic slime gives results in good agreement with data obtained using standard ICP method.
机译:相对于电位测定法,对分散在邻硝基苯基辛醚(o-NPOE)中作为新型电活性材料的含有Sn(IV)酞菁二氯化物(SnPC)和Co(II)酞菁Co(II)的聚氯乙烯聚合物膜传感器进行了电位测定。对亚硒酸盐(SeO32-)离子的响应。在pH值为3.5时,SeO32-离子在7.0 X 10(-6)-1.0 X 10(-3)和8.0 x 10(-6)-1.0 X 10(-3)Mol L-1浓度范围内的快速能斯特响应8.5,下限为5。使用SnPC和基于CoPC的膜可获得0 X 10(-6)和8.0 x 10(-6)mol L-1的校准斜率,分别为-25.4和-29.7 mV October(-1)。传感器。提出的传感器通过改进的分离溶液方法(MSSM)揭示了对不同阴离子的良好选择性,这些阴离子与经典的Hofmeister系列有很大不同。分段夹心膜方法用于确定溶剂型聚合物传感膜中情景中离子载体的复合物形成常数。在管道流量检测器中结合了CoPC的膜用于两个通道的流量注入装置中,用于连续监测亚硒酸盐的频率为。 50个样品h(-1)。直接测定药物制剂和阳极泥中的硒,其结果与使用标准ICP方法获得的数据非常吻合。

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