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Artificial lotus leaf structures from assembling carbon nanotubes and their applications in hydrophobic textiles

机译:组装碳纳米管的人造荷叶结构及其在疏水性纺织品中的应用

摘要

Artificial lotus leaf structures were fabricated on cotton substrates via the controlled assembly of carbon nanotubes onto the surface of cotton substrates. Both pristine carbon nanotubes (CNTs) and surface modified carbon nanotubes (PBA-g-CNTs) were used as building blocks to biomimic the surface microstructures of lotus leaves at the nanoscale. Cotton fabrics, which otherwise have perfect water absorbabilities, have been endowed with super-hydrophobic properties - water contact angles greater than 150° were measured. The method provides a bionic route to create hydrophobic textiles. Furthermore, considering the novel mechanical and electric properties of carbon nanotubes, these carbon nanotubes coated cotton fabrics will find potential application in sensing, conducting and special textiles.
机译:人造莲花叶结构是通过碳纳米管在棉花基材表面的受控组装而在棉花基材上制造的。原始碳纳米管(CNTs)和表面改性碳纳米管(PBA-g-CNTs)均被用作构建块,以纳米级仿效荷叶的表面微观结构。原本具有完美吸水能力的棉织物具有超疏水性能-测量了大于150°的水接触角。该方法提供了仿生途径来制造疏水性纺织品。此外,考虑到碳纳米管的新颖的机械和电性能,这些碳纳米管涂覆的棉织物将在传感,导电和特殊纺织品中找到潜在的应用。

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