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通过氧化改善负载 Ni/Co 颗粒的静电纺丝碳纤维纳米纤维的非酶生物传感性能。

Improving Nonenzymatic Biosensing Performance of Electrospun Carbon Nanofibers decorated with Ni/Co Particles via Oxidation.

机构信息

Department of Polymer Engineering and Color Technology, Amirkabir University of Technology, P.O. Box, 15875-4413, Tehran, Iran.

New Technologies Research Center (NTRC), Amirkabir University of Technology, 15875- 4413, Tehran, Iran.

出版信息

Appl Biochem Biotechnol. 2022 Jun;194(6):2542-2564. doi: 10.1007/s12010-022-03833-8. Epub 2022 Feb 16.

Abstract

Nonenzymatic biosensors do not require enzyme immobilization nor face degradation problem. Hence, nonenzymatic biosensors have recently attracted growing attention due to the stability and reproducibility. Here, a comparative study was conducted to quantitatively evaluate the glucose sensing of pure/oxidized Ni, Co, and their bimetal nanostructures grown on electrospun carbon nanofibers (ECNFs) to provide a low-cost free-standing electrode. The prepared nanostructures exhibited sensitivity (from 66.28 to 610.6 μA mM cm), linear range of 2-10 mM, limit of detection in the range of 1 mM, and the response time (< 5 s), besides outstanding selectivity and applicability for glucose detection in the human serum. Moreover, the oxidizable interfering species, such as ascorbic acid (AA), uric acid (UA), and dopamine (DA), did not cause interference. Co-C and Ni-C phase diagrams, solid-state diffusion phenomena, and rearrangement of dissolved C atoms after migration from metal particles were discussed. This study undoubtedly provides new prospects on the nonenzymatic biosensing performance of mono-metal, bimetal, and oxide compounds of Ni and Co elements, which could be quite helpful for the fabrication of biomolecules detecting devices.

摘要

非酶生物传感器不需要酶固定化,也不会面临降解问题。因此,由于其稳定性和重现性,非酶生物传感器最近引起了越来越多的关注。在这里,进行了一项比较研究,以定量评估纯/氧化 Ni、Co 及其在静电纺丝碳纳米纤维 (ECNF) 上生长的双金属纳米结构的葡萄糖传感性能,以提供低成本的独立电极。所制备的纳米结构表现出灵敏度(从 66.28 到 610.6 μA mM cm)、2-10 mM 的线性范围、检测限在 1 mM 范围内,以及小于 5 s 的响应时间,此外还具有出色的选择性和适用性,可用于检测人血清中的葡萄糖。此外,可氧化的干扰物质,如抗坏血酸 (AA)、尿酸 (UA) 和多巴胺 (DA),不会造成干扰。讨论了 Co-C 和 Ni-C 相图、固态扩散现象以及金属颗粒中溶解的 C 原子迁移后的重新排列。这项研究无疑为 Ni 和 Co 元素的单金属、双金属和氧化物化合物的非酶生物传感性能提供了新的前景,这对于生物分子检测器件的制造可能非常有帮助。

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