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Hierarchical nanostructured noble metal/metal oxide/graphene-coated carbon fiber: in situ electrochemical synthesis and use as microelectrode for real-time molecular detection of cancer cells

机译:分层纳米结构的贵金属/金属氧化物/石墨烯涂层碳纤维:原位电化学合成并用作微电极用于癌细胞的实时分子检测

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摘要

We report the design and fabrication of a new type of nanohybrid microelectrode based on a hierarchical nanostructured Au/MnO2/graphene-modified carbon fiber (CF) via in situ electrochemical synthesis, which leads to better structural integration of different building blocks into the CF microelectrode. Our finding demonstrates that wrapping CF with graphene nanosheets has dramatically increased the surface area and electrical conductivity of the CF microelectrode. The subsequent template-free electrodeposition of MnO2 on graphene-wrapped CF gives rise to a porous nanonest architecture built up from twisted and intersectant MnO2 nanowires, which serves as an ideal substrate for the direct growth of Au nanoparticles. Owing to the structural merit and synergy effect between different components, the hierarchical nanostructured noble metal/metal oxide/graphene-coated CF demonstrates dramatically enhanced electrocatalytic activity. When used for nonenzymatic H2O2 sensing, the resultant modified microelectrode exhibits acceptable sensitivity, reproducibility, stability, and selectivity, which enable it to be used for real-time tracking H2O2 secretion in human cervical cancer cells.
机译:我们报告通过原位电化学合成基于分层纳米结构的Au / MnO2 /石墨烯修饰的碳纤维(CF)的新型纳米混合微电极的设计和制造,这导致不同结构单元更好地结构整合到CF微电极中。我们的发现表明,用石墨烯纳米片包裹CF可以显着增加CF微电极的表面积和电导率。 MnO2在石墨烯包裹的CF上随后的无模板电沉积产生了由扭曲的和相交的MnO2纳米线构建的多孔纳米巢结构,它是直接生长Au纳米粒子的理想基底。由于不同组分之间的结构优点和协同作用,分层的纳米结构贵金属/金属氧化物/石墨烯涂层的CF表现出显着增强的电催化活性。当用于非酶法H2O2感测时,所得修饰的微电极表现出可接受的灵敏度,再现性,稳定性和选择性,使其能够用于实时跟踪人宫颈癌细胞中H2O2的分泌。

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