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Characterisation of poly(neutral red) modified carbon film electrodes; application as a redox mediator for biosensors

机译:聚(中性红)改性碳膜电极的表征;用作生物传感器的氧化还原介体

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摘要

The polymer redox mediator,poly(neutral red) (PNR),has been synthesised and characterised electrochemically to investigate the best electropolymerisation and mediation conditions for application in enzyme biosensors and to clarify the mechanism of action.Neutral red was electropolymerised by potential cycling on carbon film electrode substrates by allowing the monomer to be oxidised during the full 20 cycles of polymerisation or reducing the positive limit of the potential window after the first 2 cycles to impede monomer oxidation with a view to obtaining longer polymer chains and a lesser degree of branching.Comparison was made with glassy carbon substrates.The PNR films on carbon film electrodes were characterised using cyclic voltammetry and electrochemical impedance spectroscopy,as well as in glucose biosensors prepared with PNR.Glucose oxidase enzyme was immobilised by encapsulation in silica sol-gel and compared with that obtained by cross-linking with glutaraldehyde.The biosensors were evaluated by chronoamperometry in 0.1 M phosphate buffer saline solution,pH 7.0,and showed evidence of electron transfer between the enzyme cofactor flavin adenine dinucleotide and PNR dissolved in the enzyme layer competing with PNR-mediated electrochemical degradation of H2O2 formed during the enzymatic process.
机译:高分子氧化还原介体聚(中性红)(PNR)已被合成和电化学表征,以研究用于酶生物传感器的最佳电聚合和介导条件并阐明其作用机理。中性红通过碳上的电势循环进行电聚合通过使单体在整个聚合的20个循环中被氧化或降低前两个循环后的电位窗口的正极限以阻止单体氧化,从而获得更长的聚合物链和更小的支化度,从而使电极膜基底膜化。与玻璃碳基底进行了比较。使用循环伏安法和电化学阻抗谱以及用PNR制备的葡萄糖生物传感器对碳膜电极上的PNR膜进行了表征。将葡萄糖氧化酶通过包封在硅胶溶胶中固定化并与通过与戊二醛交联获得的。用计时安培法在pH 7.0的0.1 M磷酸盐缓冲盐溶液中评估ors,并显示了酶辅因子黄素腺嘌呤二核苷酸和溶解在酶层中的PNR之间的电子转移证据,该过程与PNR介导的酶降解H2O2的电化学降解竞争。

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