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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Digital laser printing of aluminum micro-structure on thermally sensitive substrates
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Digital laser printing of aluminum micro-structure on thermally sensitive substrates

机译:在热敏基材上进行铝微结构的数字激光印刷

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摘要

Aluminum metal is of particular interest for use in printed electronics due to its low cost, high conductivity and low migration rate in electrically driven organic-based devices. However, the high reactivity of Al particles at the nano-scale is a major obstacle in preparing stable inks from this metal. We describe digital printing of aluminum micro-structures by laser-induced forward transfer in a sub-nanosecond pulse regime. We manage to jet highly stable molten aluminum micro-droplets with very low divergence, less than 2 mrad, from 500 nm thin metal donor layers. We analyze the micro-structural properties of the print geometry and their dependence on droplet volume, print gap and spreading. High quality printing of aluminum micro-patterns on plastic and paper is demonstrated.
机译:铝金属因其低成本,高导电性和在电驱动的有机基器件中的低迁移率而特别受到关注,用于印刷电子领域。然而,纳米级Al颗粒的高反应性是从这种金属制备稳定油墨的主要障碍。我们描述了在亚纳秒脉冲范围内通过激光诱导的正向转移进行铝微结构的数字印刷。我们设法从500 nm薄金属供体层中喷射出高度稳定的熔融铝微滴,其发散度极低,小于2 mrad。我们分析了打印几何形状的微观结构特性及其对墨滴量,打印间隙和散布的依赖性。演示了在塑料和纸张上高质量印刷铝微图案的情况。

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