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Ag nanosheets grown on Cu nanowire-based flexible films for sensitive nonenzymatic glucose sensors

机译:基于Cu纳米线的柔性薄膜生长的AG纳米蛋白酶用于敏感的非酶葡萄糖传感器

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摘要

Cu nanowire (Cu NW) and Ag nanosheet (Ag NS) bimetallic nanocomposites were fabricated on a flexible polyethylene terephthalate (PET) slice for non-enzymatic glucose sensing via a facile two-step approach, vacuum filtration, and galvanic displacement. Low-cost Cu NW-based conductive films were employed as the conductive substrates to substitute the traditional glassy carbon electrodes or indium tin oxide electrodes. The highly stable Ag NSs grow directly on the surface of Cu NWs without additional binders. The AgNO3 concentration and displacement time were adjusted to control the consumption of Cu NWs and the growth of Ag nanostructures. With the large load of Ag and the great connection of Cu NWs, a high sensitivity of 2033 mu A mM(-1)cm(-2), a fast amperometric response of 2 s, a wide linear range of 0.0015-4.02 mM, and a satisfactory result in human serum analysis were obtained by this novel Ag NS/Cu NW/PET sensor. Especially the sensitivity of the sensor was over four-fold higher than that of pure Cu NWs/PET, benefiting from the synergistic effect of bimetals. Furthermore, the Ag NS/Cu NW/PET sensor demonstrated a stable amperometric signal against mechanical bending. The material holds promise to use to fabricate flexible electrochemical devices.
机译:在柔性聚对苯二甲酸乙二醇酯(PET)切片上制造Cu纳米线(Cu NW)和Ag纳米蛋白(Ag NS)双金属纳米复合材料,用于通过容易的两步方法,真空过滤和电催化位移的非酶促葡萄糖感测。使用低成本Cu NW的导电膜作为导电基材,以替代传统的玻碳电极或氧化铟锡电极。高度稳定的Ag NSS直接在Cu NWS的表面上生长而没有额外的粘合剂。调整AgNO 3浓度和位移时间以控制Cu NWS的消耗和Ag纳米结构的生长。随着Cu NWS的大负载和Cu NW的大连接,高灵敏度为2033μmm(-1)cm(-2),速度为2 s,宽线性范围为0.0015-4.02 mm,通过这种新的Ag NS / Cu NW / PET传感器获得了人血清分析的令人满意的结果。特别是传感器的敏感性超过纯Cu NWS / PET的四倍,受益于双齿性的协同作用。此外,AG NS / Cu NW / PET传感器通过机械弯曲表现出稳定的电流信号。该材料保持承诺用于制造柔性电化学装置。

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