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Developing roll-to-roll manufacturing system for flexible and stretchable electronics by direct stamping of silver nano-ink

机译:通过直接压印纳米银墨水开发用于柔性和可拉伸电子产品的卷对卷制造系统

摘要

Direct stamping of silver nanoparticle based ink has been developed for cost-effective and process-effective manufacturing of flexible or stretchable electronic devices. Facile removal of residual layer from deposited silver nanoparticles (AgNPs) layer results in high fidelity of final silver electrode without further post-processes. Scanning electron microscopy (SEM) images and energy dispersive x-ray spectroscopic analysis have revealed residue-free transfer of microscale inter-digitated capacitors onto flexible or stretchable substrates. Enhanced adhesion with viscous UV-curable adhesive enables perfect contact between the substrate and AgNPs in the patterned trenches. As a result, adhesion between them is maximized enough to transfer AgNPs from the trenches to the target substrates. The direct stamping also leads to densification of AgNPs in the patterned trenches by pressing force for contacting the substrate and the stamp. The densification results in lower annealing temperature (~130°C) of AgNPs than normally required annealing temperature (160°C) and better mechanical stability of resulting patterns than one from other ink-based printing techniques. SEM and atomic force microscopy show highly reduced number of pores and less roughness of the layer of AgNPs as it confirms densification of AgNPs. For further understanding of the densification in the microscopic view, simulation of the direct stamping has been performed as normal pressure is applied vertically to the stamp. The simulation reveals that by external pressure during direct stamping, the layer of AgNPs is compressed in the direction of the external pressure and is extended in the normal direction to the pressure. Extension provides room for AgNPs to move helping compression of the AgNPs’ layer by the external pressure. In addition, restoring force of the PDMS stamp enables further densification of AgNPs in the x-direction after removal of the pressure to the stamp. Finally, a table-top roll-to-roll (R2R) manufacturing system has been also successfully built to demonstrate high throughput manufacturing of flexible and stretchable electronic devices by the developed direct stamping method. Strain sensors, touch pads and radio-frequency identification (RFID) tags have been fabricated for highly sensitive flexible and stretchable sensor applications by the R2R direct stamping with the maximum speed of 1 m/minute. The fabricated sensors are still operational even with 8 mm bending radius and after 10,000 cycles of bending. And the wireless and stretchable RFID tags have shown strain sensing behavior up to 7% of stretching strain.
机译:已经开发了基于银纳米颗粒的油墨的直接压印,以用于柔性或可拉伸电子设备的成本有效且过程有效的制造。从沉积的银纳米颗粒(AgNPs)层中轻松去除残留层可确保最终银电极的保真度高,而无需进一步的后处理。扫描电子显微镜(SEM)图像和能量色散X射线光谱分析表明,微米级叉指电容器在柔性或可拉伸基板上的无残留转移。粘性可紫外线固化的粘合剂增强了附着力,使基材与图案化沟槽中的AgNP完美接触。结果,它们之间的粘附力被最大化到足以将AgNP从沟槽转移到目标衬底上。直接冲压还通过用于使基板和压模接触的压力导致图案化沟槽中的AgNP的致密化。与其他基于墨水的印刷技术相比,致密化可导致AgNP的退火温度(〜130°C)低于正常所需的退火温度(160°C),并且所得图案的机械稳定性更好。扫描电镜和原子力显微镜显示,孔洞数量大大减少,并且AgNPs层的粗糙度降低,这证实了AgNPs的致密化。为了进一步了解微观视图中的致密化,当法向压力垂直施加到压模时,已经执行了直接压模的模拟。模拟表明,通过直接冲压时的外部压力,AgNPs层在外部压力的方向上被压缩,并在垂直于压力的方向上延伸。延伸部分为AgNP的移动提供了空间,以帮助外部压力压缩AgNP的层。另外,PDMS压模的恢复力使得在去除压模的压力后,AgNP在x方向上可以进一步致密化。最后,还成功建立了台式卷对卷(R2R)制造系统,以演示通过开发的直接冲压方法进行的柔性和可拉伸电子设备的高产量制造。应变传感器,触摸板和射频识别(RFID)标签已通过R2R直接冲压以1 m / min的最大速度制造,用于高度灵敏的柔性和可拉伸传感器应用。即使弯曲半径为8 mm,并且经过10,000次弯曲后,预制的传感器仍可工作。无线和可拉伸RFID标签显示出高达7%拉伸应变的应变感应行为。

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    Kim Jiseok;

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  • 年度 2014
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