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Failure mechanism of the polymer infiltration of carbon nanotube forests

机译:碳纳米管森林聚合物渗透的破坏机理

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摘要

Polymer melt infiltration is one of the feasible methods for manufacturing filter membranes out of carbon nanotubes (CNTs) on large scales. Practically, however, its process suffers from low yields, and the mechanism behind this failure is rather poorly understood. Here, we investigate a failure mechanism of polymer melt infiltration of vertical aligned (VA-) CNTs. In penetrating the VA-CNT interstices, polymer melts exert a capillarity-induced attractive force laterally on CNTs at the moving meniscus, leading to locally agglomerated macroscale bunches. Such a large configurational change can deform and distort individual CNTs so much as to cause buckling or breakdown of the alignment. In view of membrane manufacturing, this irreversible distortion of nanotubes is detrimental, as it could block the transport path of the membranes. The failure mechanism of the polymer melt infiltration is largely attributed to steric hindrance and an energy penalty of confined polymer chains. Euler beam theory and scaling analysis affirm that CNTs with low aspect ratio, thick walls and sparse distribution can maintain their vertical alignment. Our results can enrich a mechanistic understanding of the polymer melt infiltration process and offer guidelines to the facile large-scale manufacturing of the CNT-polymer filter membranes.
机译:聚合物熔体渗透是从碳纳米管(CNT)大规模制造滤膜的可行方法之一。然而,实际上,其过程遭受了低产量的困扰,并且对该失败背后的机理还知之甚少。在这里,我们研究了垂直排列的(VA-)CNTs聚合物熔体渗透的失效机理。在穿透VA-CNT间隙时,聚合物熔体在运动的弯月面横向向CNT施加毛细作用诱导的吸引力,从而导致局部团聚的宏观簇。如此大的构型变化可能会使单个的CNT变形和变形,以至于导致排列的屈曲或破坏。考虑到膜的制造,纳米管的这种不可逆的变形是有害的,因为它可能阻塞膜的传输路径。聚合物熔体渗透的失效机理主要归因于位阻和受限聚合物链的能量损失。欧拉束理论和定标分析证实,低纵横比,厚壁和稀疏分布的CNT可以保持其垂直排列。我们的结果可以丰富对聚合物熔体渗透过程的机械理解,并为便捷的大规模生产CNT-聚合物滤膜提供指导。

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