Lepak-Kuc Sandra, Podsiadły Bartłomiej, Skalski Andrzej, Janczak Daniel, Jakubowska Małgorzata, Lekawa-Raus Agnieszka
Faculty of Mechatronics, Warsaw University of Technology, 00-661 Warsaw, Poland.
Nanomaterials (Basel). 2019 Sep 9;9(9):1287. doi: 10.3390/nano9091287.
The following paper presents a simple, inexpensive and scalable method of production of carbon nanotube-polyurethane elastomer composite. The new method enables the formation of fibers with 40% / of nanotubes in a polymer. Thanks to the 8 times higher content of nanotubes than previously reported for such composites, over an order of magnitude higher electrical conductivity is also observed. The composite fibers are highly elastic and both their electrical and mechanical properties may be easily controlled by changing the nanotubes content in the composite. It is shown that these composite fibers may be easily integrated with traditional textiles by sewing or ironing. However, taking into account their light-weight, high conductivity, flexibility and easiness of molding it may be expected that their potential applications are not limited to the smart textiles industry.
以下论文介绍了一种生产碳纳米管 - 聚氨酯弹性体复合材料的简单、廉价且可扩展的方法。这种新方法能够在聚合物中形成含有40%纳米管的纤维。由于纳米管的含量比此前报道的此类复合材料高8倍,因此还观察到电导率提高了一个数量级以上。复合纤维具有高弹性,其电学和力学性能都可以通过改变复合材料中纳米管的含量轻松控制。结果表明,这些复合纤维可以通过缝纫或熨烫轻松地与传统纺织品结合。然而,考虑到它们重量轻、导电性高、柔韧性好且易于成型,可以预期它们的潜在应用并不局限于智能纺织行业。