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Study of the effect of fabrication conditions of porous gold electrodes on sensitivity of polymer-enzyme composite glucose sensors

机译:多孔金电极制备条件对聚合物-酶复合葡萄糖传感器灵敏度的影响研究

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Porous structures can increase sensor electrode surface areas and therefore increase their sensitivity. However there are few studies revealing the relationship between different fabrication conditions of porous structures on gold electrodes and sensitivity of glucose sensors based on glucose oxidase. Here a variety of amperometric glucose sensor electrode fabrication conditions such as surface rebuilding time, rebuilding potential pulse and platinization time have been studied. The conclusions are as follows: First, the sensitivity of the sensors increased with surface rebuilding time as a result of the formation of porous structures. Second, that the rebuilding potential pulse between −3V and 5V applied to the electrodes resulted in a maximal sensitivity. Third, platinization can increase electrode sensitivity obviously, but overlong platinization time will lower the sensitivity instead. These results will be useful for the fabrication of high sensitivity glucose sensors.
机译:多孔结构可以增加传感器电极表面区域,因此增加了它们的灵敏度。然而,揭示了基于葡萄糖氧化酶的葡萄糖传感器对金电极的不同制造条件与葡萄糖传感器的敏感性之间的关系。这里研究了各种葡萄糖传感器电极制造条件,例如表面重建时间,重建潜在脉冲和镀铂时间。结论如下:首先,由于形成多孔结构的形成,传感器的灵敏度随着表面重建时间而增加。其次,在施加到电极的-3V和5V之间的重建电位脉冲导致最大灵敏度。第三,铂化可以显然提高电极敏感性,但倒数铂化时间将降低灵敏度。这些结果对于制造高灵敏度葡萄糖传感器是有用的。

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