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Biosensor Based on Screen-Printed Electrode and Glucose-Oxidase Modified with the Addition of Single-Walled Carbon Nanotubes and Thermoexpanded Graphite

机译:基于丝网印刷电极和葡萄糖 - 氧化酶的生物传感器通过添加单壁碳纳米管和热膨胀石墨(Thermoxpand Stampite)改性

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摘要

Abstract The modification of an electrode produced by a matrix printing head with the use of glucose oxidase (GOD), single-walled carbon nanotubes (SWCNTs), and thermoexpanded graphite (TEG) has been studied. During glucose oxidation, modification by SWCNTs leads to the effect of direct electron transfer. Both nanomaterials increase the magnitude of the sensitivity coefficient (SC) from 0.11 to 0.24 mA M_(–1)in the case of glucose oxidase–and ferrocene-based electrodes when modification is done with the addition of TEG and up to 0.62 mA M_(–1)when modification is done with the addition of SWCNTs. A comparison of the characteristics of the biosensors with ferrocene and nanomaterials with those of the mediator-free biosensors based on SWCNTs and GOD shows that the biosensor provides higher sensitivity detection; the magnitude of sensitivity coefficient is 1.5 mA M_(–1). The higher magnitude of the SC can be explained by the occurrence of more effective electron transfer from active centers of the enzyme to the electrode. Voltammetric measurements demonstrate that electron transfer in a mediator-free biosensor is not complicated by a chemical reaction and is carried out under the control of diffusion factors. After testing the mediator-free biosensor in practice, it is possible to talk about the applicability of such a biosensor in detecting glucose in different environments, including the fermentation industry.
机译:摘要已经研究了用葡萄糖氧化酶(上周),单壁碳纳米管(SWCNTS)和热膨胀的石墨(TEG)来改变由基质印刷头产生的电极。在葡萄糖氧化过程中,SWCNT的改性导致直接电子转移的影响。当通过添加TEG进行改性时,纳米材料两种材料在葡萄糖氧化酶 - 和二茂铁基电极的情况下增加敏感系数(Sc)的大小。 -1)通过添加SWCNTS进行修改时。基于SWCNT和上帝的无硅烯和纳米材料的生物传感器特性与基于SWCNTS的无介质生物传感器的特征的比较表明,生物传感器提供更高的灵敏度检测;灵敏度系数的幅度为1.5 mA m _( - 1)。 SC的较高幅度可以通过从酶的活性中心到电极的更有效的电子转移来解释。伏安测量表明,无介质的生物传感器中的电子转移不能通过化学反应复杂,并且在扩散因子的控制下进行。在实践中测试了无介质生物传感器之后,可以讨论这种生物传感器在不同环境中检测葡萄糖的适用性,包括发酵工业。

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