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Large-scale roll-to-roll photonic sintering of flexo printed silver nanoparticle electrodes

机译:柔性印刷银纳米粒子电极的大规模卷对卷光子烧结

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摘要

In this report we employ static and roll-to-roll (R2R) photonic sintering processes on flexo printed silver nanoparticle-based electrode structures with a heat-sensitive 60 μm thin barrier foil as a substrate. We use large area electrode structures to visualize the increased optical footprint of single and quadruple flashes, and the R2R challenges in the form of overlapping exposures. It is shown that single flash exposure is enough to significantly increase the conductivity and adhesion without damaging the foil or build-up of cracks in the silver layer. Additional flash exposures or increased energies above the threshold level have only minor impact on the conductivity but lead to cracks and substrate deformation. A second silver nanoparticle ink was printed, which was already optimized for low-temperature drying. Here we show that photonic sintering has only a minor impact on the conductivity as the nanoparticles are already sintered. The advantage of single exposure is the ability to produce higher R2R processing speeds without overlapping, which is shown in the form of theoretical calculations.
机译:在本报告中,我们对以热敏60μm薄阻隔箔为基材的柔性版印刷银纳米粒子基电极结构采用静态和卷对卷(R2R)光子烧结工艺。我们使用大面积电极结构来可视化单次和四次闪光增加的光学足迹,以及以重叠曝光的形式进行R2R挑战。结果表明,单次闪光曝光足以显着提高电导率和附着力,而不会损坏箔片或在银层中形成裂纹。超出阈值水平的其他闪光曝光或增加的能量对电导率的影响很小,但会导致裂纹和基材变形。印刷了第二种银纳米颗粒油墨,该油墨已经针对低温干燥进行了优化。在这里,我们表明光子烧结对电导率的影响很小,因为已经烧结了纳米颗粒。单次曝光的优点是能够产生更高的R2R处理速度而不会重叠,这以理论计算的形式显示出来。

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