Department of Engineering and Applied Sciences, University of Bergamo, Viale Marconi 5, 24044 Dalmine, BG, Italy.
Department of Chemistry, Bar Ilan Institute for Nanotechnology and Advanced Materials (BINA), Bar Ilan University, Ramat-Gan 52900, Israel.
J Colloid Interface Sci. 2021 Mar 15;586:120-134. doi: 10.1016/j.jcis.2020.10.076. Epub 2020 Oct 26.
From the end of the twentieth century, the growing interest in a new generation of wearable electronics with attractive application for military, medical and smart textiles fields has led to a wide investigation of chemical finishes for the production of electronic textiles (e-textiles).
Herein, a novel method to turn insulating cotton fabrics in electrically conductive by the deposition of three-dimensional hierarchical vertically aligned carbon nanotubes (VACNT) is proposed. Two VACNT samples with different length were synthesized and then dispersed in 4-dodecylbenzenesulfonic acid combined with silica-based sol-gel precursors. The dispersed VACNT were separately compounded with a polyurethane thickener to obtain homogeneous spreadable pastes, finally coated onto cotton surfaces by the "knife-over-roll" technique.
Shorter VACNT-based composite showed the best electrical conductivity, with a sheet resistance value less than 4.0 · 10 ± 6.7 · 10 Ω/sq. As demonstrated, developed e-textiles are suitable for application as humidity sensing materials in wearable smart textiles by exhibiting adequate response time for end-users and repeatability at several exposure cycles, still maintaining excellent flexibility. The proposed environmentally-friendly and cost-effective method can be easily widened to the scalable production of CNT-containing conductive flexible coatings, providing additional support to the development of real integration between electronics and textiles.
从 20 世纪末开始,人们对新一代可穿戴电子产品越来越感兴趣,这些电子产品在军事、医疗和智能纺织品领域具有诱人的应用前景,这促使人们广泛研究用于生产电子纺织品(e-textiles)的化学整理剂。
本文提出了一种将绝缘棉织物转变为导电织物的新方法,即通过三维分层垂直排列碳纳米管(VACNT)的沉积来实现。合成了两种具有不同长度的 VACNT 样品,然后将其分散在 4-十二烷基苯磺酸中,并与基于二氧化硅的溶胶-凝胶前体结合。将分散的 VACNT 分别与聚氨酯增稠剂复合,以获得均匀的可涂覆糊剂,最后通过“刀辊”技术涂覆到棉织物表面。
基于较短 VACNT 的复合材料表现出最佳的导电性,其体电阻值小于 4.0·10±6.7·10Ω/sq。研究表明,所开发的 e-textiles 适合用作可穿戴智能纺织品中的湿度感应材料,因为它们具有足够的响应时间和在多个暴露循环中的可重复性,同时仍保持出色的灵活性。所提出的环保且具有成本效益的方法可以很容易地扩展到包含 CNT 的导电柔性涂层的规模化生产,为电子和纺织品的真正集成发展提供了额外的支持。