首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Preparation and characterization of NiO-Ag nanofibers, MO nanofibers, and porous Ag: towards the development of a highly sensitive and selective non-enzymatic glucose sensor
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Preparation and characterization of NiO-Ag nanofibers, MO nanofibers, and porous Ag: towards the development of a highly sensitive and selective non-enzymatic glucose sensor

机译:NiO-Ag纳米纤维,MO纳米纤维和多孔Ag的制备和表征:致力于开发高灵敏度和选择性的非酶葡萄糖传感器

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Following a facile two-step synthesis route, NiO-Ag hybrid nanofibers, NiO nanofibers, and porous Ag were prepared. Scanning electron microscopy and transmission electron microscopy were employed to characterize the morphology of the as-prepared samples. Fourier transform infrared spectroscopy was used to confirm the complete degradation of the polymer matrix and the conversion of metal salts to metal oxides. X-Ray diffraction and X-ray photoelectron spectroscopy were performed to investigate the crystal structures and compositions of the final products. The as-prepared samples were then applied to construct non-enzymatic sensors for glucose detection. The NiO-Ag hybrid nanofiber-based sensor shows much higher sensitivity, lower detection limit and wider linear range in glucose detection compared to the NiO nanofibers or the porous Ag based sensor. A synergistic effect was achieved between NiO and Ag. High selectivity against uric acid and ascorbic acid was also achieved from the NiO-Ag nanofibers and NiO nanofiber-based sensors at an applied potential of 0.6 V. A mechanism of the excellent selectivity was proposed for the first time. The application of NiO-Ag nanofibers for selective glucose detection was also demonstrated using human serum sample, and the result is in good agreement with that of commercial glucose meter. The excellent performance of the developed inorganic nanofiber-based glucose sensor, combined with good reproducibility, low cost and inherent stability of inorganic materials, indicates great commercial value in clinical diagnosis of diabetes.
机译:遵循简便的两步合成路线,制备了NiO-Ag杂化纳米纤维,NiO纳米纤维和多孔Ag。扫描电子显微镜和透射电子显微镜被用来表征所制备样品的形态。傅里叶变换红外光谱用于确认聚合物基质的完全降解以及金属盐向金属氧化物的转化。进行X射线衍射和X射线光电子能谱研究最终产物的晶体结构和组成。然后将所制备的样品应用于构建用于葡萄糖检测的非酶传感器。与基于NiO纳米纤维或基于多孔Ag的传感器相比,基于NiO-Ag混合纳米纤维的传感器在葡萄糖检测中显示出更高的灵敏度,更低的检测极限和更宽的线性范围。 NiO和Ag之间达到了协同作用。 NiO-Ag纳米纤维和NiO纳米纤维基传感器在0.6 V的施加电势下也获得了对尿酸和抗坏血酸的高选择性。首次提出了具有优异选择性的机理。还使用人血清样品证明了NiO-Ag纳米纤维在选择性葡萄糖检测中的应用,其结果与商用血糖仪的吻合良好。所开发的基于无机纳米纤维的葡萄糖传感器的优异性能,再加上良好的重现性,低成本和无机材料固有的稳定性,在糖尿病的临床诊断中具有巨大的商业价值。

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