Printing Contractive Silver Conductive Inks Using Interface Interactions to Overcome Dewetting

Kevin Ton, T. Chu, Zhiyi Zhang, Y. Tao
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引用次数: 2

Abstract

Surface energy incompatibility between ink and substrate is a significant obstacle for inkjet printing of electronic components, causing printed lines to dewet and break apart. In this work it was demonstrated that smooth, continuous silver lines could be printed via control of inksubstrate interactions, despite the tendency of the ink to dewet from the substrate. The silver lines were printed using drop-on-demand inkjet printing of silver nanoparticle ink onto un-crosslinked SU-8 coated polyethylene terephthalate (PET). The lines were subsequently heated to control dewetting and cause contraction from 60 μm to 18 μm. The SU-8 film underneath the silver line was dissolved and redistributed and formed a ridged concave structure that prevented the lines from bulging and breaking apart.
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利用界面相互作用克服脱湿的印刷收缩银导电油墨
油墨与承印物之间的表面能不相容是电子元件喷墨印刷的一个重要障碍,它会导致印刷线条湿化和断裂。在这项工作中,它证明了平滑的,连续的银线可以通过控制油墨与基材的相互作用来印刷,尽管油墨有从基材上湿化的趋势。银线是使用银纳米颗粒墨水滴按需喷墨打印到非交联SU-8涂层的聚对苯二甲酸乙二醇酯(PET)上的。随后加热线条以控制脱湿,并使线条从60 μm收缩到18 μm。银线下面的SU-8薄膜被溶解并重新分布,形成一个脊状凹结构,防止银线膨胀和断裂。
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