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Preparation of Ni(OH)2 nanoplatelet/electrospun carbon nanofiber hybrids for highly sensitive nonenzymatic glucose sensors

机译:Ni(OH) 2 纳米片/电纺碳纳米纤维杂化物的制备用于高灵敏度非酶葡萄糖传感器

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Ni(OH)2 nanoplatelet/electrospun carbon nanofiber (ECF) hybrids have been simply prepared for the construction of nonenzymatic glucose biosensors. The resulting Ni(OH)2/ECF hybrids were carefully examined using SEM, TEM, HRTEM, XRD, and XPS. For all hybrids, two-dimensional Ni(OH)2 nanoplatelets were uniformly anchored on the one-dimensional ECFs, forming a hierarchical nanostructure, and the thickness of Ni(OH)2 nanoplatelets could be readily tailored by controlling the content of Ni(OH)2 precursor. Cyclic voltammetric studies showed enhanced redox properties for Ni(OH)2/ECF-based electrodes relative to pure Ni(OH)2 nanoplatelet electrode and significantly improved the electrocatalytic activity for glucose oxidation. The application of Ni(OH)2/ECF-based electrodes to glucose detection was explored. A low limit of detection (0.1 μM), wide detection linear range (0.005–13.05 mM), and excellent signal stability and reproducibility were demonstrated by this novel Ni(OH)2/ECF-0.06 hybrid. The sensor was also applied in real serum samples, giving satisfactory results. The simple preparation, low cost, and enhanced electrocatalytic performance of these hybrids could pave the way for highly sensitive glucose sensors.
机译:Ni(OH) 2 纳米片/电纺碳纳米纤维(ECF)杂化物已被简单地制备用于非酶葡萄糖生物传感器的构建。使用SEM,TEM,HRTEM,XRD和XPS仔细检查了生成的Ni(OH) 2 / ECF杂化物。对于所有杂种,二维Ni(OH) 2 纳米片均匀地锚固在一维ECF上,形成分层的纳米结构和Ni(OH)的厚度通过控制Ni(OH) 2 前体的含量可以很容易地制备 2 纳米片。循环伏安研究表明,相对于纯Ni(OH) 2 ,Ni(OH) 2 / ECF基电极的氧化还原性能增强。 纳米血小板电极,显着提高了葡萄糖氧化的电催化活性。探索了Ni(OH) 2 / ECF基电极在葡萄糖检测中的应用。新型Ni(OH) 2 /ECF-0.06混合。该传感器还应用于实际血清样品中,提供了令人满意的结果。这些杂化物的简单制备,低成本和增强的电催化性能可为高度敏感的葡萄糖传感器铺平道路。

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