首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Permselective and enzyme-entrapping behaviours of an electropolymerized, non-conducting, poly(o-aminophenol) thin film-modified electrode: A critical study
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Permselective and enzyme-entrapping behaviours of an electropolymerized, non-conducting, poly(o-aminophenol) thin film-modified electrode: A critical study

机译:电聚合,不导电的聚(邻氨基苯酚)薄膜修饰电极的渗透选择性和酶截留行为:一项关键研究

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摘要

Non-conducting polymeric films synthesised by the electrooxidation of o-aminophenol on a platinum electrode in acetate or phosphate buffer displayed an interesting permselective behaviour, which proved valuable in minimising the electrochemical interferences from ascorbate, acetaminophen, cysteine and urate sample molecules in amperometric detection mode. The electrosynthesis of poly(o-aminophenol) (p(oAP)) film showed also useful as permselective membrane for enzyme immobilization as demonstrated by the production of an interference-free glucose oxidase biosensor. In this respect, the glucose response time, t(0.95), evaluated in batch addition experiments, was lower than 5 s while the calibration curve was linear up to 10 mM of glucose with a sensitivity of 69.7 nA/mM. Both the permselective behaviour and the enzyme-entrapping property of the film were critically compared with the relevant studies until now reported. With respect to the sophisticated but complex approaches described elsewhere, this study shows that simply a proper optimization of p(oAP) electrosynthesis and its permselective behaviour is the key to improve significantly the selectivity of the resulting analytical devices.
机译:通过在乙酸盐或磷酸盐缓冲液中的铂电极上邻氨基苯酚的电氧化合成的非导电聚合物膜表现出有趣的选择性渗透行为,这被证明对于在安培检测模式下将抗坏血酸,对乙酰氨基酚,半胱氨酸和尿酸盐样品分子的电化学干扰最小化具有重要意义。 。聚(邻氨基苯酚)(p(oAP))膜的电合成还显示出可作为酶固定的选择性渗透膜,如无干扰葡萄糖氧化酶生物传感器的生产所证明。在这方面,在分批添加实验中评估的葡萄糖响应时间t(0.95)小于5 s,而校准曲线在10 mM的葡萄糖范围内呈线性,灵敏度为69.7 nA / mM。迄今为止,膜的渗透选择行为和酶截留性能都与相关研究进行了严格比较。关于其他地方介绍的复杂但复杂的方法,这项研究表明,简单地适当优化p(oAP)电合成及其渗透选择性行为是显着提高所得分析设备选择性的关键。

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