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Electrical conductivity of silver nanoparticle doped carbon nanofibres measured by CS-AFM

机译:CS-AFM测量的银纳米粒子掺杂碳纳米纤维的电导率

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摘要

In this work, a pioneering study on the electrical properties of composite carbon nanofibres (CNFs) using current-sensitive atomic force microscopy (CS-AFM) has been demonstrated. CNFs are highly interesting materials which are usable in a wide array of applications e.g. electrode materials for biosensors, lithium ion batteries, fuel cells and supercapacitors. CNFs offer a high specific surface area and thus have a high contact area for charge transfer. CNFs can be produced using spinnable polyacrylonitrile (PAN) as a precursor for carbonisation. For the purpose of developing efficient CNFs with high conductivity and power density, silver nanoparticle (AgNPs)-containing PAN solutions were electrospun to form composite nanofibres which was followed by heat treatment. The applied voltage of the spinning setup and the content of both PAN and the silver nanoparticles in the spinning solution were varied in order to study their influence on the morphology and the electrical properties of the nanofibres. The resultant morphologies and fibre diameters were determined by scanning electron microscopy (SEM). The formation of silver nanoparticles was characterised in solution by UV-visible absorption spectroscopy and dynamic light scattering (DLS), while energy-dispersive X-ray spectroscopy (EDX) and transmission electron microscopy (TEM) were carried out to investigate the presence as well as the average diameter of the AgNPs. The electrical properties of the CNFs were investigated using CS-AFM. This technique gives us the possibility to explore the electrical properties of single fibers and hence derive relationships between the structural features and the electrical properties. Our results show that the composite CNFs have a higher electrical conductivity than the neat CNFs and both the average diameter of the fibers and the electrical conductivity increase with an increasing AgNP content.
机译:在这项工作中,对复合碳纳米纤维的电性质使用电流敏感原子力显微镜(CS-AFM)的先驱研究(的CNF)已被证明。的CNF是它们是在广泛的应用中例如可用高度令人感兴趣的材料电极材料为生物传感器,锂离子电池,燃料电池和超级电容器。的CNF提供高的比表面积,并因此具有用于电荷转移高的接触面积。的CNF可使用可纺丝聚丙烯腈(PAN)作为用于碳化的前体来制备。为了开发具有高导电性和功率密度,银纳米颗粒(的AgNPs)含PAN溶液高效CNF的目的进行电纺丝,以形成随后的热处理复合纳米纤维。纺丝设置的施加的电压和两个PAN的内容和在纺丝液中的银纳米颗粒,以研究它们对形态和纳米纤维的电性能的影响是变化的。将得到的形态和纤维直径通过扫描电子显微镜(SEM)测定的。银纳米颗粒的形成,其特征在于在通过紫外 - 可见吸收光谱法和动态光散射(DLS)的解决方案,而能量色散型X射线光谱(EDX)和透射电子显微镜(TEM)进行了调查的存在以及作为的AgNPs的平均直径。采用CS-AFM的CNF的电气性能进行了研究。这种技术给我们探索单纤维和结构特征和电性能之间因此派生关系的电特性的可能性。我们的研究结果表明,复合的CNF具有比纯的CNF和两个纤维的平均直径,并与增加的AgNP内容电导率增加更高的导电性。

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  • 来源
    《RSC Advances》 |2019年第8期|共10页
  • 作者单位

    Deutsch Text Forschungszentrum Nord West gGmbH Adlerstr 1 D-47798 Krefeld Germany;

    Univ Duisburg Essen Dept Phys Chem Univ Str 2 D-45141 Essen Germany;

    Univ Duisburg Essen Dept Phys Chem Univ Str 2 D-45141 Essen Germany;

    Univ Duisburg Essen Dept Phys Chem Univ Str 2 D-45141 Essen Germany;

    Deutsch Text Forschungszentrum Nord West gGmbH Adlerstr 1 D-47798 Krefeld Germany;

    Univ Duisburg Essen Dept Phys Chem Univ Str 2 D-45141 Essen Germany;

    Univ Duisburg Essen Dept Phys Chem Univ Str 2 D-45141 Essen Germany;

    Deutsch Text Forschungszentrum Nord West gGmbH Adlerstr 1 D-47798 Krefeld Germany;

    Deutsch Text Forschungszentrum Nord West gGmbH Adlerstr 1 D-47798 Krefeld Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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