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Inkjet printed nano-particle Cu process for fabrication of re-distribution layers on silicon wafer

机译:喷墨印刷纳米粒子铜工艺,用于在硅晶片上制造再分布层

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As of late, attention has been paid towards usage of copper nano-particle inks instead of silver or gold nano-particle inks in the field of printed electronics, the main reason being its good conductivity with respect to its bulk material price. However, there are inherent challenges with using copper inks. One of the most crucial challenges is the reactive nature of copper nano-particles, which easily forms a non-conductive oxide layer. To combat this, the process of sintering the printed copper inks should be performed either in vacuum or an inert environment, which is difficult and costly. Laser sintering provides digital high energy-density alternative for oven sintering, which is fast enough so that the oxide layer does not have enough time to form. In this work, we have studied the sintering of inkjet printed copper ink on silicon substrate using continuous-wave 808nm diode laser. The output power and the scanning velocity of the laser as the main sintering parameters were varied in order to study their effect on the electrical resistance of the samples. A sheet resistance of about 300 mΩ/□ was measured. The tests were conducted in room conditions and the sintered patterns were analyzed using optical microscope and scanning electron microscope (SEM).
机译:直到最近,在印刷电子领域中已经开始关注使用铜纳米颗粒油墨代替银或金纳米颗粒油墨,主要原因是相对于其散装材料价格而言,其良好的导电性。然而,使用铜油墨存在固有的挑战。最关键的挑战之一是铜纳米颗粒的反应性,它容易形成非导电氧化物层。为了解决这个问题,烧结印刷的铜油墨的过程应该在真空或惰性环境中进行,这是困难且昂贵的。激光烧结为烤箱烧结提供了数字化的高能量密度替代品,其速度足够快,因此氧化物层没有足够的时间形成。在这项工作中,我们研究了使用连续波808nm二极管激光器在硅基板上烧结喷墨印刷铜油墨的过程。改变了激光的输出功率和扫描速度作为主要的烧结参数,以研究它们对样品电阻的影响。测量出约300mΩ/□的薄层电阻。在室温下进行测试,并使用光学显微镜和扫描电子显微镜(SEM)分析烧结图案。

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