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Direct electron transfer from glucose oxidase immobilized on polyphenanthroline-modified glassy carbon electrode

机译:固定在聚菲咯啉修饰的玻碳电极上的葡萄糖氧化酶的直接电子转移

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摘要

This study reports direct electron transfer (DET) from immobilized glucose oxidase (GOx) via grafted and electropolymerized 1,10-phenanthroline monohydrate (PMH). The layer of poly-1,10-phenanthroline (PPMH) was gained via electrochemical deposition, which was used to create the PPMH-modified GC-electrode (PPMH/GC-electrode). Further, the GOx was immobilized on the PPMH/GC-electrode. The effect of surface-modification by the PPMH on the electron-transfer between enzyme and electrode-surface and some other electrochemical/analytical-parameters of newly designed enzymatic-electrode were evaluated. The PPMH/GC-electrode showed superior DET to/from flavine adenine dinucleotide cofactor of GOx, while some redox-compounds including ferrocene and K_3[Fe(CN)_6] were completely electrochemically inactive on the PPMH/GC-electrode. It was also found that the resulting GOx/PPMH/GC-electrode functioned as a " direct response type" glucose-biosensor. The biosensor showed excellent selectivity towards glucose and demonstrated good operational-stability. According to our best knowledge, this study is the first scientific report on electrochemical-polymerization of PMH on the GC-electrode in non-aqueous media followed by its application in the design of glucose-biosensor.
机译:这项研究报告了通过接枝和电聚合的1,10-菲咯啉一水合物(PMH)从固定的葡萄糖氧化酶(GOx)直接进行电子转移(DET)。通过电化学沉积获得聚1,10-菲咯啉(PPMH)层,该层用于创建PPMH修饰的GC电极(PPMH / GC电极)。此外,将GOx固定在PPMH / GC电极上。评估了PPMH进行的表面修饰对酶与电极表面之间电子转移以及新设计的酶电极的其他电化学/分析参数的影响。 PPMH / GC电极显示出比GOx的黄素腺嘌呤二核苷酸辅因子更好的DET,而某些氧化还原化合物(包括二茂铁和K_3 [Fe(CN)_6])在PPMH / GC电极上完全没有电化学活性。还发现所得的GOx / PPMH / GC电极起“直接反应型”葡萄糖生物传感器的作用。该生物传感器显示出对葡萄糖的优异选择性,并显示出良好的操作稳定性。根据我们的最佳知识,这项研究是关于PMH在非水介质中在GC电极上电化学聚合的第一份科学报告,随后将其应用于葡萄糖生物传感器的设计。

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