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Enzymatic glucose biosensor based on porous ZnO/Au electrodes

机译:基于多孔ZnO / Au电极的酶促葡萄糖生物传感器

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摘要

This paper describes a glucose biosensor based on glucose oxidase (GOx) immobilized on porous ZnO/Au electrodes. The ZnO porous electrodes were fabricated by electrochemical deposition of zinc oxide on patterned Au electrodes using polystyrene (PS) spheres as templates. Uniform pore size and highly ordered ZnO pore arrangement were observed from SEM images. X-ray diffraction (XRD) patterns revealed a single crystalline nature of the porous ZnO. This porous structure provides high enzyme loading capacity and long-term stability. In a pH 7.4 phosphate buffer solution, the positively charged high isoelectric point (IEP) ZnO pores enhance the adsorption of negatively charged low IEP GOx through electrostatic attractive force. Once GOx molecules are immobilized within the ZnO pores, the bottleneck structure resulting from the connected pores hinders leaching of GOx from the pores. The resulting enzymatic biosensor showed a linear detection range from 1mM to 18mM, and sensitivity of 10.89μA/ (mM·cm2) with good selectivity and long-term stability.
机译:本文介绍了一种基于葡萄糖氧化酶(GOx)的葡萄糖生物传感器,该传感器固定在多孔ZnO / Au电极上。使用聚苯乙烯(PS)球作为模板,通过在图案化的Au电极上电化学沉积氧化锌来制造ZnO多孔电极。从SEM图像观察到均匀的孔径和高度有序的ZnO孔排列。 X射线衍射(XRD)图谱显示了多孔ZnO的单晶性质。这种多孔结构提供了高的酶负载能力和长期稳定性。在pH 7.4的磷酸盐缓冲溶液中,带正电的高等电点(IEP)ZnO孔通过静电吸引力增强了带负电的低IEP GOx的吸附。一旦GOx分子被固定在ZnO孔中,由于连接的孔导致的瓶颈结构阻碍了GOx从孔中的浸出。所得酶生物传感器的线性检测范围为1mM至18mM,灵敏度为10.89μA/(mM·cm2),具有良好的选择性和长期稳定性。

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