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一种用于双氯芬酸测定的、包含功能化β-环糊精的新型电位电极。

A new potentiometric electrode incorporating functionalized β-cyclodextrins for diclofenac determination.

作者信息

Lenik Joanna

机构信息

Department of Analytical Chemistry and Instrumental Analysis, Chemical Faculty, Maria Curie-Skłodowska University, M. Curie-Skłodowska Sq. 3, 20-031 Lublin, Poland.

出版信息

Mater Sci Eng C Mater Biol Appl. 2014 Dec;45:109-16. doi: 10.1016/j.msec.2014.08.072. Epub 2014 Sep 6.

Abstract

This paper reports the preparation of diclofenac-selective membrane electrodes incorporating β-cyclodextrins: (2-hydroxypropyl)-β-cyclodextrin, heptakis(2,3,6-tri-O-methyl)-β-cyclodextrin, and heptakis(2,3,6-tri-O-benzoyl)-β-cyclodextrin. Several plasticized poly(vinyl chloride) membranes of different compositions were tested with the best electrode being the one incorporating heptakis(2,3,6-tri-O-benzoyl)-β-cyclodextrin with the membrane plasticized with 2-nitrophenyloctyl ether. The electrode is characterized by a near-Nernstian response slope of -60.0 mV decade(-1) over the linear range of 5.0×10(-5)-1.0×10(-2) mol L(-1) and a limit of detection of 1.4×10(-5) mol L(-1). The proposed electrode can easily discriminate diclofenac ions from several inorganic and organic interferents and some common drug excipients. The electrode has a response time of 10s and can be used within a pH range of 6.2-8.5 over 10 months without any considerable deterioration. The electrical properties of the membrane electrode were studied by impedance spectroscopy. The notable advantages of the diclofenac-selective electrode include its high sensitivity, selectivity, cost-effectiveness, and comfortable application in drug and urine analysis.

摘要

本文报道了包含β-环糊精的双氯芬酸选择性膜电极的制备:(2-羟丙基)-β-环糊精、七(2,3,6-三-O-甲基)-β-环糊精和七(2,3,6-三-O-苯甲酰基)-β-环糊精。测试了几种不同组成的增塑聚氯乙烯膜,最佳电极是包含七(2,3,6-三-O-苯甲酰基)-β-环糊精且用2-硝基苯基辛醚增塑的膜。该电极的特征在于,在5.0×10⁻⁵ - 1.0×10⁻² mol L⁻¹的线性范围内,近能斯特响应斜率为-60.0 mV/十倍浓度,检测限为1.4×10⁻⁵ mol L⁻¹。所提出的电极能够轻松地区分双氯芬酸离子与几种无机和有机干扰物以及一些常见的药物辅料。该电极的响应时间为10秒,可在pH范围6.2 - 8.5内使用10个月而无任何明显劣化。通过阻抗谱研究了膜电极的电学性质。双氯芬酸选择性电极的显著优点包括其高灵敏度、选择性、成本效益以及在药物和尿液分析中的便捷应用。

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