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Chromium(III) porphyrin as a selective ionophore in a salicylate-selective membrane electrode

机译:铬(III)卟啉作为水杨酸盐选择性膜电极中的选择性离子载体

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The construction, potentiometric response properties, and applications of a novel ion-selective electrode with high selectivity toward salicylate are described. Chromium(III) tetraphenylporphyrin chloride was used as ion carrier into plasticized PVC membrane. This ionophore is capable of serving as both a positively charged and neutral carrier, depending on the pH of the sample solution. The influence of several variables was investigated to optimize the potentiometric response and selectivity of the electrode. The resulting electrode demonstrates a near-Nernstian response over a wide range cif salicylate concentration (10(-6)-10(-1) M). Ibis electrode has a fast response time and micromolar detection limit and could be used over a wide pH range (3-9). The proposed electrode showed very high selectivity for salicylate over a number of common inorganic and organic anions. The specific interaction of salicylate with the central metal of porphyrin is described based on UV-visible absorption spectra. The electrode was successfully applied to the determination of salicylate in pharmaceutical preparations and clinical samples. [References: 41]
机译:描述了对水杨酸酯具有高选择性的新型离子选择电极的结构,电位响应特性及其应用。氯化铬四苯基卟啉(III)被用作增塑PVC膜中的离子载体。根据样品溶液的pH值,该离子载体既可以充当带正电荷的载体,又可以充当中性载体。研究了几个变量的影响,以优化电极的电位响应和选择性。所得电极在宽范围的水杨酸盐浓度(10(-6)-10(-1)M)上显示出接近能斯特的响应。 Ibis电极具有快速的响应时间和微摩尔检测极限,可以在较宽的pH范围(3-9)中使用。所提出的电极对水杨酸在许多常见的无机和有机阴离子上显示出很高的选择性。基于紫外可见吸收光谱描述了水杨酸酯与卟啉中心金属的特定相互作用。该电极已成功应用于药物制剂和临床样品中水杨酸酯的测定。 [参考:41]

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