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Ultra-small dispersed CuxO nanoparticles on graphene fibers for miniaturized electrochemical sensor applications

机译:用于小型化电化学传感器应用的石墨烯纤维上的超小型分散的核颗粒

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摘要

A graphene microfiber (GF) modified with ultrafine CuxO nanoparticles (Cu(x)ONPs/GF) has been fabricated by direct annealing of electrodeposited nano-sized copper-based metal organic frameworks (HKUST-1) and used as an electrode for nonenzymatic H2O2 sensing. Benefiting from the unique microfiber architecture and synergetic effects, as well as strong coupling between components with many active sites and boosted electron transport, the Cu(x)ONPs/GF electrode shows prominent sensitivity, selectivity and long-term operational stability for the detection of H2O2. Further work successfully applied this Cu(x)ONPs/GF electrode to detection of H2O2 in real samples such as milk and human serum. These results indicate that the Cu(x)ONPs/GF is a promising mini-sized sensor in electrochemical analysis.
机译:通过直接退火的电沉积的纳米尺寸的铜基金属有机骨架(HKust-1)进行改造的石墨烯微纤维(GF)(Cu(X)ONPS / GF),并用作非酶H2O2的电极 传感。 受益于独特的超细纤维建筑和协同效应,以及具有许多有源网站的组件与增强电子传输的强烈耦合,Cu(x)Onps / GF电极显示出突出的灵敏度,选择性和长期操作稳定性的检测 H2O2。 进一步的工作成功地将该Cu(x)ONPS / GF电极应用于真实样品中的H2O2,例如牛奶和人血清。 这些结果表明Cu(X)ONPS / GF是电化学分析中有希望的迷你大小传感器。

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    《RSC Advances》 |2019年第48期|共6页
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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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