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Comparison of protein immobilisation methods onto oxidised and native carbon nanofibres for optimum biosensor development

机译:比较蛋白质固定化方法在氧化和天然碳纳米纤维上的最佳生物传感器开发

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The properties of native and oxidised graphene layered carbon nanofibres are compared, and their utilisation in enzyme biosensor systems using different immobilisation methods are evaluated. The efficient oxidation of carbon nanofibres with concentrated H2SO4/HNO3 is confirmed by Raman spectroscopy while the introduction of carboxylic acid groups on the surface of the fibres by titration studies. The oxidised fibres show enhanced oxidation efficiency to hydrogen peroxide, while at the same time they exhibit a more efficient and selective interaction with enzymes. The analytical characteristics of biosensor systems based on the adsorption or covalent immobilisation of the enzyme glucose oxidase on carbon nanofibres are compared. The study reveals that carbon nanofibres are excellent substrates for enzyme immobilisation allowing the development of highly stable biosensor systems.
机译:比较了天然和氧化石墨烯层状碳纳米纤维的特性,并评估了它们在使用不同固定方法的酶生物传感器系统中的利用率。拉曼光谱法证实了浓H2SO4 / HNO3 对碳纳米纤维的有效氧化作用,同时通过滴定研究在纤维表面引入了羧酸基团。氧化的纤维显示出对过氧化氢的增强的氧化效率,同时它们显示出与酶的更有效和选择性的相互作用。比较了基于葡萄糖氧化酶在碳纳米纤维上的吸附或共价固定的生物传感器系统的分析特性。研究表明,碳纳米纤维是固定化酶的极好底物,可开发出高度稳定的生物传感器系统。

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