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Morphology and N-2 permeability of multi-wall carbon nanotube - Teflon membranes

机译:多壁碳纳米管-铁氟龙膜的形貌和N-2渗透性

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We prepared buckypapers with surface densities in the 1.13-5.66 mg center dot cm(-2) range by filtering multi-wall carbon nanotube (MWCNT) suspensions in acetyl-acetone (acac) and dimethylformamide (DMF) through 0.45 gm nylon filters. Filtration curves were evaluated using the Carman equation. The average resistance of the filter itself was found to be R-m = 3.79 center dot 10(10) m(-1) for acac and 8.49 center dot 10(10) m(-1) for DMF The specific resistance alpha of the filter cakes decreased with increasing film surface density from 16.1 center dot 10(12) m center dot kg(-1) (for the 1.13 mg center dot cm(-2) film from DMF) to 4.38 center dot 10(12) m center dot kg(-1) (for the 5.66 mg center dot cm(-2) film from DMF). The effective diffusivity of N-2 at 298 K and a pressure difference of 10 mbar was also determined for all membranes and found to fall into the 1.14 center dot 10(-9)-3.74 center dot 10(-9) m(2) center dot s(-1) range. Both the porosity and the tortuosity of buckypapers increased with their thickness. An approx. 5 mu m thick Teflon (PTFE) coating was applied to the MWCNT membranes by pulsed laser deposition. The gas permeability of the MWCNT-PTFE membranes matches that of the uncoated nanotube films. This observation is an agreement with our SEM and AFM data on porous coating morphology.
机译:我们通过0.45 gm尼龙过滤器过滤在乙酰丙酮(acac)和二甲基甲酰胺(DMF)中的多壁碳纳米管(MWCNT)悬浮液,制备了表面密度在1.13-5.66 mg中心点cm(-2)范围内的巴基纸。使用卡曼方程评估过滤​​曲线。发现过滤器本身的平均电阻对于acac为Rm = 3.79中心点10(10)m(-1),对于DMF为8.49中心点10(10)m(-1)。滤饼的电阻率α随着膜表面密度的增加而降低,从16.1中心点10(12)m中心点kg(-1)(对于DMF中的1.13 mg中心点cm(-2)膜)到4.38中心点10(12)m中心点kg (-1)(用于DMF的5.66 mg中心点cm(-2)胶片)。还确定了所有膜在298 K下N-2的有效扩散率和10 mbar的压差,发现它们落入1.14中心点10(-9)-3.74中心点10(-9)m(2)中心点s(-1)范围。巴基纸的孔隙率和曲折度均随其厚度的增加而增加。大约通过脉冲激光沉积将5μm厚的聚四氟乙烯(PTFE)涂层施加到MWCNT膜上。 MWCNT-PTFE膜的气体渗透率与未涂覆的纳米管膜的气体渗透率相匹配。该观察结果与我们关于多孔涂层形态的SEM和AFM数据一致。

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