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首页> 外文期刊>Frontiers in Chemistry >Combining Electrospinning and Vapor-Phase Polymerization for the Production of Polyacrylonitrile/ Polypyrrole Core-Shell Nanofibers and Glucose Biosensor Application
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Combining Electrospinning and Vapor-Phase Polymerization for the Production of Polyacrylonitrile/ Polypyrrole Core-Shell Nanofibers and Glucose Biosensor Application

机译:将静电纺丝和气相聚合组合在生产聚丙烯腈/聚吡咯芯壳纳米纤维和葡萄糖生物传感器应用中的制备

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In this work, polyacrylonitrile (PAN) nanofiber mats coated with conductive polypyrrole layers were produced at the surface of gold electrodes by a two-step approach combining electrospinning and vapor phase polymerization. In the first step, smooth and uniform PAN fibers exhibiting an average diameter of 650 ± 10 nm were generated through electrospinning of 12 wt% PAN solutions. The electrospun PAN fibers were impregnated with iron(III)tosylate (FeTos), annealed at 70°C and used as a robust and stable template for the growth of a thin layer of conductive polymer by co-polymerizing pyrrole (Py) and pyrrole-3-carboyxylic acid (Py3COOH) vapors under nitrogen atmosphere. The carboxyl groups introduced in polypyrrole coatings enabled further covalent binding of a model enzyme, glucose oxidase. The effect of different parameters (concentration of FeTos into the immersion solution, time of polymerization, Py/Py3COOH molar ratio) on the PAN/PPy/PPy3COOH/GOx impedimetric biosensor response was investigated. In the best conditions tested (immersion of the PAN fibers into 20 wt% FeTos solution, polymerization time: 30 min, 1:2 Py/Py3COOH ratio), the biosensor response was linear in a wide range of glucose concentration (20 nM-2μM) and selective towards ascorbic and uric acids. A very low limit of detection (2 nM) compared to those already reported in the literature was achieved. This value enables the determination of glucose in human serum after a large dilution of the sample (normal concentrations: 3.6 mM-6.1 mM range).
机译:在这项工作中,通过组合静电纺丝和气相聚合的两步方法在金电极表面在金电极表面上产生聚丙烯腈(PAN)纳米纤维垫。在第一步中,通过12wt%PAN溶液的静电纺丝产生平坦且均匀的平底锅纤维的平均直径为650±10nm。用铁(III)甲苯磺酸铁(胎)浸渍电纺盘纤维,在70℃下退火,用作通过共聚合吡咯(PY)和吡咯 - 薄层导电聚合物的生长稳健和稳定的模板。在氮气氛下的3-碳酰基酸(Py3COOH)蒸气。在聚吡咯涂层中引入的羧基能够进一步共价结合模型酶,葡萄糖氧化酶。研究了不同参数(纤维浓度进入浸渍溶液中,聚合时间,Py / Py3COOH摩尔比)对PAN / PPY / PPY3COOH / GOX阻抗生物传感器反应的影响。在测试的最佳条件下(将PAN纤维浸入20wt%的纤维溶液中,聚合时间:30分钟,1:2 py / py3COOH比),在宽范围的葡萄糖浓度下是线性的(20nm-2μm )和选择性抗坏血酸和尿酸。与文献中已经报道的那些相比,检测极限(2nm)非常低。该值能够在大量稀释样品(正常浓度:3.6mm-6.1mm范围)后测定人血清中的葡萄糖。

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