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首页> 外文期刊>Journal of Micromechanics and Microengineering >Microtransfer printing of metal ink patterns onto plastic substrates utilizing an adhesion-controlled polymeric donor layer
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Microtransfer printing of metal ink patterns onto plastic substrates utilizing an adhesion-controlled polymeric donor layer

机译:利用粘合力受控的聚合物供体层将金属油墨图案微转移印刷到塑料基材上

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We propose a method for transfer-printed electrode patterns onto flexible/plastic substrates, specifically intended for metal ink that requires a high sintering temperature. Typically, metal-ink-based electrodes cannot be picked up for microtransfer printing because the adhesion between the electrodes and the donor substrate greatly increases after the sintering process due to the binding materials. We introduced a polymeric donor layer between the printed electrodes and the donor substrate and effectively reduced the adhesion between the Ag pattern and the polymeric donor layer by controlling the interfacial contact area. After completing a wet-etching process for the polymeric donor layer, we obtained Ag patterns supported on the fine polymeric anchor structures; the Ag patterns could be picked up onto the stamp surface even after the sintering process by utilizing the viscoelastic properties of the elastomeric stamp with a pick-up velocity control. The proposed method enables highly conductive metal-ink-based electrode patterns to be applied on thermally weak plastic substrates via an all-solution process. Metal electrodes transferred onto a film showed superior electrical and mechanical stability under the bending stress test required for use in printed flexible electronics.
机译:我们提出一种用于将印刷的电极图案转移到柔性/塑料基板上的方法,该方法专门用于要求高烧结温度的金属油墨。典型地,金属墨基电极不能被拾取用于微转移印刷,因为在电极和施主衬底之间的粘合力在烧结过程之后由于粘合材料而大大增加。我们在印刷电极和施主基板之间引入了聚合物施主层,并通过控制界面接触面积有效降低了Ag图案与聚合物施主层之间的附着力。在完成对聚合物供体层的湿法刻蚀过程之后,我们获得了支撑在精细聚合物锚固结构上的Ag图案。通过利用具有拾取速度控制的弹性体压模的粘弹性质,即使在烧结过程之后,也可以将Ag图案拾取到压模表面上。所提出的方法使得能够通过全溶液工艺将高导电性的基于金属油墨的电极图案施加到热弱的塑料基板上。在印刷柔性电子设备中使用的弯曲应力测试下,转移到薄膜上的金属电极显示出优异的电气和机械稳定性。

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