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Nonenzymatic Glucose Sensing Using Ni60Nb40 Nanoglass

机译:使用Ni60nb40纳米液体的非酶葡萄糖感测

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摘要

Despite being researched for nearly five decades, chemical application of metallic glass is scarcely explored. Here we show electrochemical nonenzymatic glucose-sensing ability of nickel-niobium (Ni60Nb40) amorphous alloys in alkaline medium. Three different Ni60Nb40 systems with the same elemental composition, but varying microstructures are created following different synthetic routes and tested for their glucose-sensing performance. Among melt-spun ribbon, nanoglass, and amorphous-crystalline nanocomposite materials, nanoglass showed the best performance in terms of high anodic current density, sensitivity (20 mA cm(-2) mM(-1)), limit of detection (100 nM glucose), stability, reproducibility (above 5000 cycles), and sensing accuracy among nonenzymatic glucose sensors involving amorphous alloys. When annealed under vacuum, only the heat-treated nanoglass retained a similar electrochemical-sensing property, while the other materials failed to yield desired results. In nanoglass, a network of glassy interfaces, compared to melt-spun ribbon, is plausibly responsible for the enhanced sensitivity.
机译:尽管正在研究近五十年,但几乎没有探索金属玻璃的化学应用。在这里,我们在碱性介质中展示了镍 - 铌(Ni60NB40)非晶合金的电化学非酶葡萄糖感测能力。具有相同元素组成的三种不同的NI60NB40系统,但在不同的合成路线采用不同的微观结构,并对它们进行葡萄糖传感性能进行测试。在熔融纺丝带中,纳米烃和无定形结晶纳米复合材料,纳米光盘在高阳极电流密度,灵敏度(20 mA cm(-2)mm(-1)),检测极限(100nm)方面表示最佳性能(100nm葡萄糖),稳定性,再现性(高于5000个循环),以及涉及无定形合金的非酶葡萄糖传感器的感测精度。当在真空下退火时,只有热处理的纳米玻璃保留类似的电化学传感性质,而其他材料未能收益所需的结果。在纳米烃中,与熔化纺丝带相比,玻璃界面的网络是合理的,可负责增强的灵敏度。

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