Centre for Graphene Science, College of Engineering, Mathematics and Physical Sciences, University of Exeter, EX4 4QF, Exeter, United Kingdom.
INESC-MN and IN, Rua Alves Redol 9, 1000-029, Lisbon, Portugal.
Sci Rep. 2017 Jun 26;7(1):4250. doi: 10.1038/s41598-017-04453-7.
Conducting fibres are essential to the development of e-textiles. We demonstrate a method to make common insulating textile fibres conductive, by coating them with graphene. The resulting fibres display sheet resistance values as low as 600 Ωsq, demonstrating that the high conductivity of graphene is not lost when transferred to textile fibres. An extensive microscopic study of the surface of graphene-coated fibres is presented. We show that this method can be employed to textile fibres of different materials, sizes and shapes, and to different types of graphene. These graphene-based conductive fibres can be used as a platform to build integrated electronic devices directly in textiles.
导电线是电子纺织品发展的关键。我们展示了一种使常见绝缘纺织纤维导电的方法,即将其用石墨烯进行涂层处理。得到的纤维表现出低至 600 Ω/sq 的面电阻值,表明将高导电性的石墨烯转移到纺织纤维时并未损失其导电性。我们对石墨烯涂层纤维的表面进行了广泛的微观研究。我们表明,该方法可以用于不同材料、尺寸和形状的纺织纤维,以及不同类型的石墨烯。这些基于石墨烯的导电纤维可用作在纺织品中直接构建集成电子设备的平台。