Kralj Magdalena, Krivačić Sara, Ivanišević Irena, Zubak Marko, Supina Antonio, Marciuš Marijan, Halasz Ivan, Kassal Petar
Division of Physical Chemistry, Ruđer Bošković Institute, Bijenička cesta 54, 10000 Zagreb, Croatia.
Faculty of Chemical Engineering and Technology, University of Zagreb, Marulićev trg 19, 10000 Zagreb, Croatia.
Nanomaterials (Basel). 2022 Aug 25;12(17):2936. doi: 10.3390/nano12172936.
With the growing number of flexible electronics applications, environmentally benign ways of mass-producing graphene electronics are sought. In this study, we present a scalable mechanochemical route for the exfoliation of graphite in a planetary ball mill with melamine to form melamine-intercalated graphene nanosheets (M-GNS). M-GNS morphology was evaluated, revealing small particles, down to 14 nm in diameter and 0.4 nm thick. The M-GNS were used as a functional material in the formulation of an inkjet-printable conductive ink, based on green solvents: water, ethanol, and ethylene glycol. The ink satisfied restrictions regarding stability and nanoparticle size; in addition, it was successfully inkjet printed on plastic sheets. Thermal and photonic post-print processing were evaluated as a means of reducing the electrical resistance of the printed features. Minimal sheet resistance values (5 kΩ/sq for 10 printed layers and 626 Ω/sq for 20 printed layers) were obtained on polyimide sheets, after thermal annealing for 1 h at 400 °C and a subsequent single intense pulsed light flash. Lastly, a proof-of-concept simple flexible printed circuit consisting of a battery-powered LED was realized. The demonstrated approach presents an environmentally friendly alternative to mass-producing graphene-based printed flexible electronics.
随着柔性电子应用数量的不断增加,人们正在寻找环境友好的大规模生产石墨烯电子产品的方法。在本研究中,我们展示了一种可扩展的机械化学路线,用于在行星式球磨机中用三聚氰胺对石墨进行剥离,以形成三聚氰胺插层的石墨烯纳米片(M-GNS)。对M-GNS的形态进行了评估,发现其为小颗粒,直径小至14 nm,厚度为0.4 nm。基于绿色溶剂水、乙醇和乙二醇,M-GNS被用作喷墨可打印导电油墨配方中的功能材料。该油墨满足了关于稳定性和纳米颗粒尺寸的要求;此外,它成功地喷墨打印在了塑料片上。对热和光子后打印处理作为降低打印特征电阻的一种方法进行了评估。在聚酰亚胺片上,经过400℃下1小时的热退火以及随后的单次强脉冲光闪光后,获得了最小的薄层电阻值(10层打印为5 kΩ/sq,20层打印为626 Ω/sq)。最后,实现了一个由电池供电的发光二极管组成的概念验证简单柔性印刷电路。所展示的方法为大规模生产基于石墨烯的印刷柔性电子产品提供了一种环境友好的替代方案。