Boumegnane Abdelkrim, Douhi Said, Batine Assia, Dormois Thibault, Cochrane Cédric, Nadi Ayoub, Cherkaoui Omar, Tahiri Mohamed
Organic Synthesis and Extraction Laboratory (OSEV), Ain Chock's Faculty of Sciences, Hassan II University, Casablanca B.P 5366, Morocco.
Textile Materials Research Laboratory (REMTEX), Higher School of Textile and Clothing Industries (ESITH), Casablanca 20230, Morocco.
Sensors (Basel). 2024 May 5;24(9):2938. doi: 10.3390/s24092938.
The development of e-textiles necessitates the creation of highly conductive inks that are compatible with precise inkjet printing, which remains a key challenge. This work presents an innovative, syringe-based method to optimize a novel bio-sourced silver ink for inkjet printing on textiles. We investigate the relationships between inks' composition, rheological properties, and printing behavior, ultimately assessing the electrical performance of the fabricated circuits. Using Na-alginate and polyethylene glycol (PEG) as the suspension matrix, we demonstrate their viscosity depends on the component ratios. Rheological control of the silver nanoparticle-laden ink has become paramount for uniform printing on textiles. A specific formulation (3 wt.% AgNPs, 20 wt.% Na-alginate, 40 wt.% PEG, and 40 wt.% solvent) exhibits the optimal rheology, enabling the printing of 0.1 mm thick conductive lines with a low resistivity (8 × 10 Ω/cm). Our findings pave the way for designing eco-friendly ink formulations that are suitable for inkjet printing flexible antennas and other electronic circuits onto textiles, opening up exciting possibilities for the next generation of E-textiles.
电子纺织品的发展需要创造出与精确喷墨打印兼容的高导电性墨水,这仍然是一个关键挑战。这项工作提出了一种创新的、基于注射器的方法,用于优化一种新型的生物源银墨水,以便在纺织品上进行喷墨打印。我们研究了墨水的成分、流变特性和打印行为之间的关系,最终评估了所制造电路的电气性能。使用海藻酸钠和聚乙二醇(PEG)作为悬浮基质,我们证明了它们的粘度取决于组分比例。对载银纳米颗粒墨水的流变控制对于在纺织品上进行均匀打印至关重要。一种特定配方(3 wt.% 银纳米颗粒、20 wt.% 海藻酸钠、40 wt.% PEG和40 wt.% 溶剂)表现出最佳流变学性能,能够打印出厚度为0.1毫米、电阻率低(8×10Ω/cm)的导电线。我们的研究结果为设计适合在纺织品上喷墨打印柔性天线和其他电子电路的环保墨水配方铺平了道路,为下一代电子纺织品开辟了令人兴奋的可能性。