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Hybrid Printing Metal-mesh Transparent Conductive Films with Lower Energy Photonically Sintered Copper/tin Ink

机译:低能量光子烧结铜/锡油墨的混合印刷金属网透明导电膜

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摘要

With the help of photonic sintering using intensive pulse light (IPL), copper has started to replace silver as a printable conductive material for printing electrodes in electronic circuits. However, to sinter copper ink, high energy IPL has to be used, which often causes electrode destruction, due to unreleased stress concentration and massive heat generated. In this study, a Cu/Sn hybrid ink has been developed by mixing Cu and Sn particles. The hybrid ink requires lower sintering energy than normal copper ink and has been successfully employed in a hybrid printing process to make metal-mesh transparent conductive films (TCFs). The sintering energy of Cu/Sn hybrid films with the mass ratio of 2:1 and 1:1 (Cu:Sn) were decreased by 21% compared to sintering pure Cu film, which is attributed to the lower melting point of Sn for hybrid ink. Detailed study showed that the Sn particles were effectively fused among Cu particles and formed conducting path between them. The hybrid printed Cu/Sn metal-mesh TCF with line width of 3.5 μm, high transmittance of 84% and low sheet resistance of 14 Ω/□ have been achieved with less defects and better quality than printed pure copper metal-mesh TCFs.
机译:借助于使用强脉冲光(IPL)的光子烧结,铜已开始替代银,作为可印刷的导电材料,用于印刷电子电路中的电极。但是,要烧结铜油墨,必须使用高能IPL,由于未释放的应力集中和产生大量热量,高能量IPL通常会导致电极损坏。在这项研究中,已经通过混合Cu和Sn颗粒来开发Cu / Sn混合油墨。混合油墨比普通的铜油墨需要更低的烧结能量,并且已经成功地用于混合印刷工艺中以制造金属网透明导电膜(TCF)。质量比为2:1和1:1(Cu:Sn)的Cu / Sn杂化薄膜的烧结能量比纯铜薄膜降低了21%,这归因于杂化材料中Sn的熔点较低墨。详细的研究表明,Sn颗粒可以有效地融合在Cu颗粒之间,并在它们之间形成导电路径。与印刷的纯铜金属网状TCF相比,线宽为3.5μm,高透射比为84%且薄层电阻为14Ω/□的混合印刷Cu / Sn金属网状TCF的缺陷更少,质量更高。

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