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METHYLPHENAZONIUM-MODIFIED ENZYME SENSOR BASED ON POLYMER THICK FILMS FOR SUBNANOMOLAR DETECTION OF PHENOLS

机译:基于聚合物厚膜的亚甲基苯甲酰修饰的酶传感器用于亚纳米级的苯酚检测

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摘要

A methylphenazonium-zeolite-modified enzyme sensor based on a planar, screen-printed, two-electrode arrangement is described for the subnanomolar detection of phenols. Using tyrosinase (EC 1.14.18.1), a novel polyurethane hydrogel was applied for immobilization and stabilization of the enzyme, which forms a self-adhering layer on the active surface of the strip sensor. Performance and characteristics of the sensor were evaluated with regard to response time, detection limit, selectivity, and dependences on temperature and pH as well as operating and storage stabilities. The sensor shows marked sensitivity to eight phenolic compounds usually present in industrial waste waters. The detection limit for phenol was obtained with 0.25 nM. Comparing sensor responses with DIN and EPA standard methods for the chemical analyses of both synthetic and real sample matrices, the results indicate the feasibility of the strip sensor for sensitive determination of phenols in field analysis.
机译:描述了一种基于平面,丝网印刷,两电极排列的甲基吩唑鎓沸石修饰的酶传感器,用于亚纳摩尔的苯酚检测。使用酪氨酸酶(EC 1.14.18.1),将新型聚氨酯水凝胶用于酶的固定和稳定化,该酶在条带传感器的活性表面上形成自粘层。评估了传感器的性能和特性,包括响应时间,检测限,选择性,对温度和pH的依赖性以及操作和存储稳定性。该传感器对通常存在于工业废水中的八种酚类化合物显示出明显的敏感性。苯酚的检出限为0.25 nM。将传感器响应与DIN和EPA标准方法进行比较,可对合成和真实样品基质进行化学分析,结果表明该条形传感器在现场分析中灵敏测定酚的可行性。

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