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Soft, highly conductive nanotube sponges and composites with controlled compressibility

机译:柔软,导电性高的纳米管海绵和可控压缩性的复合材料

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摘要

Porous carbon nanotube networks represent a type of material that can achieve both structural robustness and high flexibility. We demonstrate here controlled synthesis of soft to hard sponges with densities ranging from 5 to 25 mg/cm~3, while retaining a porosity of >99%. The stable sponge-like structure allows excellent compressibility tunable up to 90% volume shrinkage, and the ability to recover most of volume by free expansion. Electrical resistivity of the sponges changes linearly and reversibly after 300 cycles of large-strain compression. Nanotubes forming the three-dimensional scaffold maintain good contact and percolation during large-strain deformation, polymer infiltration, and cross-linking process, suggesting potential applications as strain sensors and conductive nanocomposites.
机译:多孔碳纳米管网络代表了一种既可以实现结构坚固性又具有高柔韧性的材料。我们在这里证明了密度从5到25 mg / cm〜3的软到硬海绵的受控合成,同时保持了> 99%的孔隙率。稳定的海绵状结构可提供出色的可压缩性,可调节至90%的体积收缩率,并具有通过自由膨胀恢复大部分体积的能力。经过300次大应变压缩后,海绵的电阻率呈线性可逆变化。形成三维支架的纳米管在大应变变形,聚合物渗透和交联过程中保持良好的接触和渗滤,暗示了其作为应变传感器和导电纳米复合材料的潜在应用。

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