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Laser patterning of highly conductive flexible circuits

机译:激光图案化高导电柔性电路

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There has been considerable attention paid to highly conductive flexible adhesive (CFA) materials as electrodes and interconnectors for future flexible electronic devices. However, the patterning technology still needs to be developed to construct micro-scale electrodes and circuits. Here we developed the selective laser sintering technology where the pattering and curing were accomplished simultaneously without making additional masks. The CFA was composed of micro-scale Ag flakes, multiwalled carbon nanotubes decorated with Ag nanoparticles, and a nitrile-butadiene-rubber matrix. The Teflon-coated polyethylene terephthalate film was used as a flexible substrate. The width of lines (50-500 mu m) and circuit patterns were controlled by the programmable scanning of a focused laser beam (power = 50 mW, scanning speed = 1mm s(-1)). The laser irradiation removed solvent and induced effective coalescence among fillers providing a conductivity as high as 25 012 S cm(-1). The conductivity stability was excellent under the ambient air and humid environments. The normalized resistance change of the pattern was smaller than 1.2 at the bending radius of 5 mm. The cyclability and adhesion of the laser-sintered line pattern on the substrate was excellent. A flexible circuit was fabricated sequentially for operating light emitting diodes during the bending motion, demonstrating excellent feasibility for practical applications in flexible electronics.
机译:对于未来灵活电子设备的电极和互联器,有相当大的关注,以获得高导电的柔性粘合剂(CFA)材料和互联网。然而,需要开发图案化技术来构建微尺寸电极和电路。在这里,我们开发了选择性激光烧结技术,在不进行额外面具的情况下同时完成图案化和固化。 CFA由微级Ag薄片组成,用Ag纳米颗粒装饰的多壁碳纳米管和腈 - 丁二烯 - 橡胶基质组成。将Teflon涂覆的聚对苯二甲酸薄膜用作柔性基材。线的宽度(50-500μm)和电路图案由聚焦激光束的可编程扫描控制(Power = 50mW,扫描速度= 1mm S(-1))来控制。激光照射除去溶剂并在填料中诱导有效的聚结,其提供高达25 012 S cm(-1)的电导率。在环境空气和潮湿环境下,电导率稳定性优异。图案的归一化电阻变化在5mm的弯曲半径下小于1.2。激光烧结线图案在基材上的可粘附性和粘附性优异。在弯曲运动期间依次制造柔性电路,用于在弯曲运动期间操作发光二极管,展示柔性电子器件中的实际应用的优异可行性。

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