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Capillarity-driven assembly of two-dimensional cellular carbon nanotube foams

机译:二维多孔碳纳米管泡沫的毛细作用驱动的组装

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Capillary forces arising during the evaporation of liquids from dense carbon nanotube arrays are used to reassemble the nano-tubes into two-dimensional contiguous cellular foams. The stable nanotube foams can be elastically deformed, transferred to other substrates, or floated out to produce free-standing macroscopic fabrics. The lightweight cellular foams made of condensed nano-tubes could have applications as shock-absorbent structural reinforcements and elastic membranes. The ability to control the length scale, orientation, and shape of the cellular structures and the simplicity of the assembly process make this a particularly attractive system for studying pattern formation in ordered media. [References: 29]
机译:从致密的碳纳米管阵列蒸发液体期间产生的毛细作用力用于将纳米管重新组装成二维连续的多孔泡沫。稳定的纳米管泡沫可以弹性变形,转移到其他基材上或漂浮出来,以生产自立的宏观织物。由冷凝的纳米管制成的轻质多孔泡沫可以用作减震结构增强材料和弹性膜。控制细胞结构的长度尺度,方向和形状的能力以及组装过程的简单性,使其成为研究有序介质中图案形成的特别吸引人的系统。 [参考:29]

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