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Single-Walled Carbon Nanotube Networks: The Influence of Individual Tube-Tube Contacts on the Large-Scale Conductivity of Polymer Composites

机译:单壁碳纳米管网络:单个管-管接触对聚合物复合材料大规模电导率的影响

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摘要

Over two decades after carbon nanotubes started to attract interest for their seemingly huge prospects, their electrical properties are far from being used to the maximum potential. Composite materials based on carbon nanotubes still have conductivities several orders of magnitude below those of the tubes themselves. This study aims at understanding the reason for these limitations and the possibilities to overcome them. Based on and validated by real single-walled carbon nanotube (SWCNT) networks, a simple model is developed, which can bridge the gap between macroscale and nanoscale down to individual tube-tube contacts. The model is used to calculate the electrical properties of the SWCNT networks, both as-prepared and impregnated with an epoxy-amine polymer. The experimental results show that the polymer has a small effect on the large-scale network resistance. From the model results it is concluded that the main contribution to the conductivity of the network results from direct contacts, and that in their presence tunneling contacts contribute insignificantly to the conductivity. Preparing highly conductive polymer composites is only possible if the number of direct, low-resistance contacts in the network is sufficiently large and therefore these direct contacts play the key role.
机译:在碳纳米管因其看似巨大的前景开始引起人们的兴趣之后的二十多年中,其电学性能远未发挥最大潜力。基于碳纳米管的复合材料的电导率仍比管子本身的电导率低几个数量级。本研究旨在了解这些限制的原因以及克服这些限制的可能性。基于实际的单壁碳纳米管(SWCNT)网络并通过其验证,开发了一个简单的模型,该模型可以缩小宏观和纳米尺度之间的差距,直至各个管-管接触。该模型用于计算SWCNT网络的电性能,包括制备的和浸渍有环氧胺聚合物的SWCNT网络。实验结果表明,该聚合物对大规模网络电阻的影响较小。从模型结果可以得出结论,对网络导电性的主要贡献是由直接接触引起的,并且在存在隧道接触的情况下,对导电性的贡献很小。只有在网络中直接的低电阻触点数量足够大时才可以制备高导电性的聚合物复合材料,因此这些直接触点起着关键作用。

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