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Enhanced Adsorption of Glucose Oxidase by Introducing Artificial Porosity into Polypyrrole Based Glucose Biosensors

机译:通过将人工孔隙引入基于聚吡咯的葡萄糖生物传感器中增强的葡萄糖氧化酶吸附

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A polypyrrole(PPy) based biosensor fabricated on a Pt plated nano-porous alumina electrode has been described. By selecting nano-porous electrodes, the enzyme adsorption has been increased and the usage of a cross linking agent has enhanced the performances of the sensor remarkably. A thin film of PPy/PF6 was synthesized with 0.05M Pyrrole, 0.1M NaPF6 at a current density of 0.3mA/cm2 for 90s. The immobilization was done by physically adsorbing 5驴L of Glucose Oxidase (GOx) on PPy thin film. Glutaraldehyde (0.1wt.%, 5 驴L) was used for cross-linking. The synthesized films were characterized by using amperometric electrochemical technique and scanning electron microscopy (SEM). Amperometric responses were measured as a function of different concentrations of glucose. Nanoporous electrodes lead to high enzyme loading. Stability, sensitivity, reproducibility and repeatability have been increased with the usage of cross-linking.
机译:已经描述了在镀Pt的纳米多孔氧化铝电极上制造的基于聚吡咯(PPy)的生物传感器。通过选择纳米多孔电极,增加了酶的吸附,并且交联剂的使用显着提高了传感器的性能。用0.05M吡咯,0.1M NaPF6在0.3mA / cm2的电流密度下合成PPy / PF6薄膜90秒钟。固定化是通过将5驴葡萄糖葡萄糖氧化酶(GOx)物理吸附在PPy薄膜上来完成的。戊二醛(0.1wt。%,5驴L)用于交联。合成的薄膜通过使用安培电化学技术和扫描电子显微镜(SEM)进行表征。根据不同浓度的葡萄糖测量安培响应。纳米孔电极导致高酶负载。随着交联的使用,稳定性,灵敏度,再现性和重复性得到了提高。

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