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Nanoscale infiltration behaviour and through-thickness permeability of carbon nanotube buckypapers

机译:碳纳米管巴克纸的纳米级渗透行为和全层渗透性

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Carbon nanotube thin films or 'buckypapers' show potential for various applications including electrodes for energy devices, nanoscale filtration devices and composite materials. This paper reports on the study of through-thickness permeability of different buckypaper materials. The infiltration behaviours of different liquids into four types of buckypaper were investigated. Infiltration of the liquids into buckypaper was found to follow Darcy's law, except in the case of epoxy resin solution permeation into SWNT buckypaper. The results revealed that the permeability of SWNT buckypaper was of the order of 10~(-19) m~2, which is about two orders of magnitude lower than the 10~(-17) m~2 permeability for the MWNT buckypaper. The factors of wider pores, higher porosity and less surface area appear to contribute to a higher permeability, which is consistent with Darcy's law and the Kozeny-Carman model. The Kozeny constants of buckypapers correlated well with the tortuosity of their flow paths and nanoscale pore size. The polarity of working fluids did not show an impact on the permeability. Solutions with molecular size near the size of the nanopores in the buckypaper led to lower permeability due to the occurrence of pore blockage. In addition, a threshold pressure existed for liquid to infiltrate into nanoscale pores in buckypapers, which does not exist in fibre reinforcement preforms.
机译:碳纳米管薄膜或“巴克纸”显示出各种应用的潜力,包括用于能量设备的电极,纳米级过滤设备和复合材料。本文报道了不同的​​巴克纸材料的全厚度渗透性的研究。研究了不同液体在四种类型的巴克纸中的渗透行为。发现液体渗透到巴基纸中是遵循达西定律的,除非环氧树脂溶液渗透到SWNT巴基纸中。结果表明,SWNT布基纸的渗透率约为10〜(-19)m〜2,比MWNT布基纸的10〜(-17)m〜2的渗透率低约两个数量级。孔隙较大,孔隙率较高和表面积较小的因素似乎有助于较高的渗透率,这与达西定律和Kozeny-Carman模型一致。 buckypapers的Kozeny常数与其曲折流动路径和纳米级孔径密切相关。工作流体的极性对渗透率没有影响。由于孔堵塞的发生,分子尺寸接近于布基纸中纳米孔大小的溶液导致较低的渗透性。另外,存在阈值压力以使液体渗透到巴克纸中的纳米级孔中,这在纤维增强预成型坯中是不存在的。

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