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Direct Electrochemistry of Glucose Oxidase on Novel Free-Standing Nitrogen-Doped Carbon Nanospheres@Carbon Nanofibers Composite Film

机译:新型游离氮掺杂碳纳米球@碳纳米纤维复合膜上葡萄糖氧化酶的直接电化学

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摘要

We have proposed a novel free-standing nitrogen-doped carbon nanospheres@carbon nanofibers (NCNSs@CNFs) composite film with high processability for the investigation of the direct electron transfer (DET) of glucose oxidase (GOx) and the DET-based glucose biosensing. The composites were simply prepared by controlled thermal treatment of electrospun polypyrrole nanospheres doped polyacrylonitrile nanofibers (PPyNSs@PAN NFs). Without any pretreatment, the as-prepared material can directly serve as a platform for GOx immobilization. The cyclic voltammetry of immobilized GOx showed a pair of well-defined redox peaks in O2-free solution, indicating the DET of GOx. With the addition of glucose, the anodic peak current increased, while the cathodic peak current decreased, which demonstrated the DET-based bioelectrocatalysis. The detection of glucose based on the DET of GOx was achieved, which displayed high sensitivity, stability and selectivity, with a low detection limit of 2 μM and wide linear range of 12–1000 μM. These results demonstrate that the as-obtained NCNSs@CNFs can serve as an ideal platform for the construction of the third-generation glucose biosensor.
机译:我们已经提出了一种新颖的具有高可加工性的独立式氮掺杂碳纳米球@碳纳米纤维(NCNSs @ CNFs)复合膜,用于研究葡萄糖氧化酶(GOx)的直接电子转移(DET)和基于DET的葡萄糖生物传感。 。通过控制电纺丝掺杂的聚丙烯腈纳米纤维(PPyNSs @ PAN NFs)的电纺丝聚吡咯纳米球,可以简单地制备复合材料。无需任何预处理,所制备的材料可以直接用作GOx固定化的平台。固定化GOx的循环伏安法在不含O2的溶液中显示一对明确定义的氧化还原峰,表明GOx的DET。随着葡萄糖的添加,阳极峰值电流增加,而阴极峰值电流减少,这证明了基于DET的生物电催化。实现了基于GOx DET的葡萄糖检测,显示了高灵敏度,稳定性和选择性,低检测限为2μm,线性范围为12-1000μM。这些结果表明,所获得的NCNSs @ CNFs可以作为构建第三代葡萄糖生物传感器的理想平台。

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