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Facile synthesis of Ni(OH)(2) nanoplates on nitrogen-doped carbon foam for nonenzymatic glucose sensors

机译:氮掺杂碳泡沫上用于非酶葡萄糖传感器的Ni(OH)(2)纳米板的轻松合成

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摘要

In this work, ultrathin Ni(OH)(2) nanoplates uniformly anchored on nitrogen-doped carbon foam (NCF) were facilely prepared for the construction of nonenzymatic glucose biosensors. The Ni(OH)(2)/NCF hybrid was prepared by the pyrolysis of melamine foam (utilizing it as a template) followed by the growth of Ni(OH)(2) nanoplates via a microwave process. The Ni(OH)(2)/NCF with three-dimensional macroporous and hierarchical architectures can provide continuous channels for the rapid diffusion of an electrolyte to access the electrochemically active sites of Ni(OH)(2) nanoplates. Moreover, the NCF with abundant active sites can effectively prevent the agglomeration of Ni(OH)(2), and also could be a conductive core providing efficient electron transport for the fast redox reactions of Ni(OH)(2). Being employed as a nonenzymatic glucose detection electrochemical electrode, it exhibits a wide linear response ranging from 5 mu M to 9.15 mM, and a low detection limit (0.8 mu M) with excellent selectivity. Meanwhile, the sensor was also applied to the detection of glucose content in real serum samples with satisfactory results. The simple preparation procedure, low cost, and enhanced electrocatalytic performance potentially pave a new, effective and promising way for highly sensitive glucose sensors.
机译:在这项工作中,方便地制备了均匀锚固在掺氮碳泡沫(NCF)上的超薄Ni(OH)(2)纳米板,用于构建非酶葡萄糖生物传感器。 Ni(OH)(2)/ NCF杂化材料是通过三聚氰胺泡沫的热解(以其为模板)制备的,然后通过微波工艺生长Ni(OH)(2)纳米板。具有三维大孔和分层结构的Ni(OH)(2)/ NCF可为电解质的快速扩散提供连续通道,以访问Ni(OH)(2)纳米板的电化学活性位。此外,具有丰富活性位点的NCF可以有效地防止Ni(OH)(2)的团聚,并且还可以作为导电核,为Ni(OH)(2)的快速氧化还原反应提供有效的电子传输。用作非酶葡萄糖检测电化学电极,它具有5 µM至9.15 mM的宽线性响应,以及低检测限(0.8μM),具有出色的选择性。同时,该传感器还用于实际血清样品中葡萄糖含量的检测,结果令人满意。简单的制备过程,低成本和增强的电催化性能可能为高灵敏度的葡萄糖传感器铺平新的,有效的和有希望的方法。

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