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Non-destructive characterization of structural hierarchy within aligned carbon nanotube assemblies

机译:对准的碳纳米管组件内结构层次的无损表征

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摘要

Understanding and controlling the hierarchical self-assembly of carbon nanotubes (CNTs) is vital for designing materials such as transparent conductors, chemical sensors, high-performance composites, and microelectronic interconnects. In particular, many applications require high-density CNT assemblies that cannot currently be made directly by low-density CNT growth, and therefore require post-processing by methods such as elastocapillary densification. We characterize the hierarchical structure of pristine and densified vertically aligned multi-wall CNT forests, by combining small-angle and ultra-small-angle x-ray scattering (USAXS) techniques. This enables the nondestructive measurement of both the individual CNT diameter and CNT bundle diameter within CNT forests, which are otherwise quantified only by delicate and often destructive microscopy techniques. Our measurements show that multi-wall CNT forests grown by chemical vapor deposition consist of isolated and bundled CNTs, with an average bundle diameter of 16 nm. After capillary densification of the CNT forest, USAXS reveals bundles with a diameter >4 μm, in addition to the small bundles observed in the as-grown forests. Combining these characterization methods with new CNT processing methods could enable the engineering of macro-scale CNT assemblies that exhibit significantly improved bulk properties.
机译:了解和控制碳纳米管(CNT)的分层自组装对于设计诸如透明导体,化学传感器,高性能复合材料和微电子互连之类的材料至关重要。特别是,许多应用需要当前无法通过低密度CNT生长直接制造的高密度CNT组件,因此需要通过诸如弹性毛细管致密化的方法进行后处理。通过结合小角度和超小角度X射线散射(USAXS)技术,我们描述了原始和致密的垂直排列多壁CNT森林的层次结构。这使得能够对CNT林中的各个CNT直径和CNT束直径进行非破坏性测量,否则只能通过精细且通常具有破坏性的显微镜技术进行量化。我们的测量结果表明,通过化学气相沉积法生长的多壁CNT森林由孤立且成束的CNT组成,平均束直径为16 nm。在碳纳米管森林的毛细致密化之后,除了在成年森林中观察到的小束外,USAXS还发现了直径> 4μm的束。将这些表征方法与新的CNT处理方法结合起来可以使工程化的CNT组件表现出显着改善的整体性能。

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