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Scalable graphene-based nanocomposite coatings for flexible and washable conductive textiles
Carbon ( IF 10.9 ) Pub Date : 2020-10-01 , DOI: 10.1016/j.carbon.2020.05.108
Horacio J. Salavagione , Peter S. Shuttleworth , Juan P. Fernández-Blázquez , Gary J. Ellis , Marián A. Gómez-Fatou

Abstract Graphene has recently become one of the preferred conductive materials for smart textiles. The most widely employed strategy to integrate graphene into textiles consists of coating the surface of the target substrate. However, this approach presents limitations related to the preparation of the coating material and its performance during work. Herein we introduce a new concept for the coating of conductive carbon-based materials on textiles by using a nanocomposite ink composed of graphene and an elastomer, in a low boiling point solvent. It allows coating large areas of textiles in a short time and the covering layer presents good elasticity making it durable under strong mechanical deformation. In addition, the apolar nature of the coating confers washing resistance to the textiles. Furthermore, the approach is broad in scope as the coating behaves similarly on both synthetic (Nylon, polyester, acrylic) or natural (cotton, cellulose) textiles.

中文翻译:

用于柔性和可清洗导电纺织品的可扩展石墨烯基纳米复合涂层

摘要 石墨烯最近成为智能纺织品的首选导电材料之一。将石墨烯集成到纺织品中最广泛采用的策略包括涂覆目标基材的表面。然而,这种方法存在与涂层材料的制备及其在工作过程中的性能相关的局限性。在此,我们介绍了一种新概念,通过在低沸点溶剂中使用由石墨烯和弹性体组成的纳米复合油墨,在纺织品上涂覆导电碳基材料。它允许在短时间内对大面积的纺织品进行涂层,并且覆盖层具有良好的弹性,使其在强烈的机械变形下经久耐用。此外,涂层的非极性特性赋予纺织品耐洗性。此外,
更新日期:2020-10-01
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