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Ultrasensitive non-enzymatic glucose sensor based on three-dimensional network of ZnO-CuO hierarchical nanocomposites by electrospinning

机译:基于电纺丝ZnO-CuO分级纳米复合材料三维网络的超灵敏非酶葡萄糖传感器

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摘要

Three-dimensional (3D) porous ZnO–CuO hierarchical nanocomposites (HNCs) nonenzymatic glucose electrodes with different thicknesses were fabricated by coelectrospinning and compared with 3D mixed ZnO/CuO nanowires (NWs) and pure CuO NWs electrodes. The structural characterization revealed that the ZnO–CuO HNCs were composed of the ZnO and CuO mixed NWs trunk (~200 nm), whose outer surface was attached with small CuO nanoparticles (NPs). Moreover, a good synergetic effect between CuO and ZnO was confirmed. The nonenzymatic biosensing properties of as prepared 3D porous electrodes based on fluorine doped tin oxide (FTO) were studied and the results indicated that the sensing properties of 3D porous ZnO–CuO HNCs electrodes were significantly improved and depended strongly on the thickness of the HNCs. At an applied potential of + 0.7 V, the optimum ZnO–CuO HNCs electrode presented a high sensitivity of 3066.4 μAmM−1cm−2, the linear range up to 1.6 mM, and low practical detection limit of 0.21 μM. It also showed outstanding long term stability, good reproducibility, excellent selectivity and accurate measurement in real serum sample. The formation of special hierarchical heterojunction and the well-constructed 3D structure were the main reasons for the enhanced nonenzymatic biosensing behavior.
机译:通过共旋制备了具有不同厚度的三维(3D)多孔ZnO-CuO分级纳米复合材料(HNCs)非酶葡萄糖电极,并将其与3D混合ZnO / CuO纳米线(NWs)和纯CuO NWs电极进行了比较。结构特征表明,ZnO-CuO HNC由ZnO和CuO混合NW主干(〜200 nm)组成,其外表面附着有小的CuO纳米颗粒(NP)。此外,证实了CuO和ZnO之间的良好协同作用。研究了基于氟掺杂氧化锡(FTO)的3D多孔电极的非酶生物传感性能,结果表明3D多孔ZnO-CuO HNCs电极的传感性能得到了显着改善,并且强烈依赖于HNC的厚度。在+0.7 V的施加电势下,最佳的ZnO–CuO HNCs电极具有3066.4μAmM -1 cm −2 的高灵敏度,线性范围高达1.6 mM ,实际检测限低至0.21μM。它在真实血清样品中还显示出出色的长期稳定性,良好的重现性,出色的选择性和准确的测量结果。特殊的分层异质结的形成和结构良好的3D结构是增强非酶生物传感行为的主要原因。

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