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首页> 外文期刊>Acta Chimica Slovenica >Ion-Selective Electrodes for the Potentiometric Determination of Pramoxine HCl Using Different Ionophores
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Ion-Selective Electrodes for the Potentiometric Determination of Pramoxine HCl Using Different Ionophores

机译:离子选择电极,用于使用不同离子载体电位滴定测定盐酸盐酸雷莫新

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摘要

Four novel pramoxine HCl (PAM) selective electrodes were investigated with 2-nitrophenyl octylether as a plasticiser in a polymeric matrix of polyvinyl chloride (PVC). Sensor 1 was fabricated using sodium-tetraphenylborate (TPB) as an anionic exchanger without incorporation of an ionophore. Sensor 2 used 2-hydroxy propyl -cyclodextrin as an ionopho-re, while sensors 3 and 4 were constructed using 4-sulfocalix-6-arene and 4-sulfocalix-8-arene respectively as ionophores. Linear responses of PAM within the concentration ranges of 1.0 x 10~(-4) to 1.0 x 10~(-2) mol L~(-1) and 1.0 x 10~(-5) to 1.0 x 10~(-2) mol L~(-1) were obtained using sensors 1 and 2, respectively and 1.0x 10~(-6) to 1.0x 10~(-2) mol L~(-1) were obtained using sensors 3 and 4. Nernstian slopes of 50.4 ± 0.6, 54.3 ± 0.8, 56.3 ± 0.3 and 59.1 ± 0.5 mV/decade over the pH range of 3.0-6.0 were observed. The selectivity coefficients of the developed sensors indicated excellent selectivity for PAM. The utility of 2-hydroxy- propylcyclodextrin (2HP-|3-CD) and 4-sulfocalix [6,8] arene (SC 6, 8) as ionophores had a significant influence on increasing the membrane sensitivity and selectivity of sensors 2, 3 and 4 compared to sensor 1. The proposed sensors displayed useful analytical characteristics for the determination of PAM in bulk powder, pharmaceutical formulation, and in biological fluid. Validation of the method showed the suitability of the proposed electrodes for the use in the quality control assessment of the drug. Furthermore, statistical comparison between the results obtained by the proposed method and the official method of the drug was performed and no significant difference was found.
机译:用2-硝基苯基辛基醚作为增塑剂,在聚氯乙烯(PVC)的聚合物基体中研究了四个新颖的​​盐酸帕拉莫辛(PAM)选择性电极。传感器1是使用四苯基硼酸钠(TPB)作为阴离子交换剂制造的,没有引入离子载体。传感器2使用2-羟丙基-环糊精作为离子载体,而传感器3和4分别使用4-磺基吡啶-6-芳烃和4-磺基吡啶-8-芳烃作为离子载体构建。 PAM在1.0 x 10〜(-4)至1.0 x 10〜(-2)mol L〜(-1)和1.0 x 10〜(-5)至1.0 x 10〜(-2)浓度范围内的线性响应)mol L〜(-1)分别使用传感器1和2获得,并且1.0x 10〜(-6)至1.0x 10〜(-2)mol L〜(-1)使用传感器3和4获得。在3.0-6.0的pH范围内,Nernstian斜率为50.4±0.6、54.3±0.8、56.3±0.3和59.1±0.5 mV /十倍。已开发的传感器的选择性系数表明对PAM具有出色的选择性。 2-羟基-丙基环糊精(2HP- | 3-CD)和4-磺胺嘧啶[6,8]芳烃(SC 6,8)作为离子载体的用途对提高膜的灵敏度和传感器2、3的选择性具有重大影响与4相比,传感器1。拟议的传感器显示出用于测定散装粉末,药物制剂和生物流体中PAM的有用分析特性。该方法的验证表明,所提出的电极适合用于药物的质量控制评估。此外,通过提议的方法获得的结果与该药物的官方方法之间进行了统计比较,没有发现显着差异。

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