Azar Golnaz Taghavi Pourian, Danilova Sofya, Krishnan Latha, Fedutik Yirij, Cobley Andrew J
Functional Materials and Chemistry Research Group, Department of Engineering, Environment and Computing, Coventry University, Coventry CV1 5FB, UK.
Research and Innovation Services, University of South Wales, Pontypridd CF37 1DL, UK.
Polymers (Basel). 2022 Aug 25;14(17):3467. doi: 10.3390/polym14173467.
The electroless copper plating of textiles, which have been previously printed with a catalyst, is a promising method to selectively metallise them to produce high-reliability e-textiles, sensors and wearable electronics with wide-ranging applications in high-value sectors such as healthcare, sport, and the military. In this study, polyester textiles were ink-jet printed using differing numbers of printing cycles and printing directions with a functionalised copper-silver nanoparticle catalyst, followed by electroless copper plating. The catalyst was characterised using Transmission Electron Microscopy (TEM) and Ultraviolet/Visible (UV/Vis) spectroscopy. The electroless copper coatings were characterised by copper mass gain, visual appearance and electrical resistance in addition to their morphology and the plating coverage of the fibres using Scanning Electron Microscopy (SEM). Stiffness, laundering durability and colour fastness of the textiles were also analysed using a stiffness tester and Launder Ometer, respectively. The results indicated that in order to provide a metallised pattern with the desired conductivity, stiffness and laundering durability for e-textiles, the printing design, printing direction and the number of printing cycles of the catalyst should be carefully optimised considering the textile's structure. Achieving a highly conductive complete copper coating, together with an almost identical and sufficiently low stiffness on both sides of the textile can be considered as useful indicators to judge the suitability of the process.
对预先用催化剂进行印花处理的纺织品进行化学镀铜,是一种很有前景的方法,可对其进行选择性金属化处理,以生产高可靠性的电子纺织品、传感器和可穿戴电子产品,在医疗保健、体育和军事等高价值领域有着广泛应用。在本研究中,使用功能化的铜银纳米颗粒催化剂,以不同的印花循环次数和印花方向对聚酯纺织品进行喷墨印花,随后进行化学镀铜。使用透射电子显微镜(TEM)和紫外/可见(UV/Vis)光谱对催化剂进行表征。除了使用扫描电子显微镜(SEM)对化学镀铜涂层的形态和纤维的镀覆覆盖率进行表征外,还通过铜质量增益、外观和电阻对其进行表征。分别使用硬挺度测试仪和洗涤仪对纺织品的硬挺度、洗涤耐久性和色牢度进行了分析。结果表明,为了为电子纺织品提供具有所需导电性、硬挺度和洗涤耐久性的金属化图案,应根据纺织品的结构仔细优化催化剂的印花设计、印花方向和印花循环次数。获得高导电性的完整铜涂层,以及在纺织品两面具有几乎相同且足够低的硬挺度,可被视为判断该工艺适用性的有用指标。