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Rearrangement of 1D Conducting Nanomaterials towards Highly Electrically Conducting Nanocomposite Fibres for Electronic Textiles

机译:一维导电纳米材料向高导电性的电子纺织品纳米复合纤维的重排

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摘要

Nanocarbon-based conducting fibres have been produced using solution- or dry-spinning techniques. Highly conductive polymer-composite fibres containing large amounts of conducting nanomaterials have not been produced without dispersants, however, because of the severe aggregation of conducting materials in high-concentration colloidal solutions. Here we show that highly conductive (electrical conductivity ~1.5 × 105 S m−1) polymer-composite fibres containing carbon nanotubes and silver nanowires can be fabricated via a conventional solution-spinning process without any other treatment. Spinning dopes were fabricated by a simple mixing of a polyvinyl alcohol solution in dimethylsulfoxide with a paste of long multi-walled carbon nanotubes dispersed in organic solvents, assisted by quadruple hydrogen-bonding networks and an aqueous silver nanowire dispersion. The high electrical conductivity of the fibre was achieved by rearrangement of silver nanowires towards the fibre skin during coagulation because of the selective favourable interaction between the silver nanowires and coagulation solvents. The prepared conducting fibres provide applications in electronic textiles such as a textile interconnector of light emitting diodes, flexible textile heaters, and touch gloves for capacitive touch sensors.
机译:纳米碳基导电纤维已使用溶液纺丝或干纺技术生产。但是,由于没有导电剂在高浓度的胶体溶液中严重聚集,因此没有分散剂就不能生产出含有大量导电纳米材料的高导电聚合物复合纤维。在这里,我们表明可以通过常规解决方案制备包含碳纳米管和银纳米线的高导电性(电导率〜1.5×10 5 S m -1 )聚合物复合纤维纺丝过程中无需任何其他处理。纺丝原液是通过将聚乙烯醇在二甲基亚砜中的溶液与分散在有机溶剂中的长壁多壁碳纳米管的糊状物简单混合而得到的,并借助四重氢键网络和水性银纳米线分散体进行混合。纤维的高电导率是在凝结过程中通过将银纳米线朝向纤维皮肤重新排列而实现的,因为银纳米线与凝结溶剂之间具有选择性的有利相互作用。制备的导电纤维可用于电子纺织品,例如发光二极管的纺织品互连器,柔性纺织品加热器以及用于电容式触摸传感器的触摸手套。

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