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Time-Efficient Curing of Printed Dielectrics via Infra-Red Suitable to S2S and R2R Manufacturing Platforms for Electronic Devices

机译:适用于电子设备的S2S和R2R制造平台的通过红外技术的印刷介电材料的时间高效固化

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摘要

Inkjet technology is commonly used as a nonimpact, versatile, and additive digital manufacturing/printing technology. The flexibility offered by this technology toward deposition accuracy, usage, industrial upscaling relevance, and even testing of various solution processable functional materials, e.g., conductors and insulators, makes it very attractive for printed electronic applications. The focus of this paper is improving the curing time durations for inkjet-printed polymeric dielectric layers. In this paper, enhancement with regard to curing time durations is performed and they were found to be reduced dramatically down to less than 1 min using Infrared (IR) emitters, whereas the state-of-the-art curing demands a minimum of 60 min. Here in the experiments, inkjet printing was done using conductive and dielectric inks for developing fundamental devices like a capacitor. The sintering of silver electrodes was done using a conventional oven, and curing of the polymeric dielectric was done using a conventional oven as well as IR radiation. Observations are made on the basis of the dielectric insulation between the top and bottom electrodes for the capacitors containing dielectrics cured in conventional oven and those which are cured using IR radiation under two different manufacturing platforms, i.e., sheet to sheet and roll to roll.
机译:喷墨技术通常用作无冲击,多功能和附加的数字制造/打印技术。该技术在沉积精度,用途,工业升级相关性甚至测试各种可溶液加工的功能材料(例如导体和绝缘体)方面提供的灵活性,使其对于印刷电子应用非常有吸引力。本文的重点是改善喷墨印刷聚合物介电层的固化时间。在本文中,对固化时间进行了增强,发现使用红外(IR)发射器可将固化时间显着降低至不到1分钟,而最新的固化要求至少60分钟。在这里的实验中,使用导电墨水和介电墨水进行喷墨打印,以开发基本设备(如电容器)。使用常规炉进行银电极的烧结,并且使用常规炉以及IR辐射进行聚合物电介质的固化。基于包含在常规烘箱中固化的电介质的电容器的顶部电极和底部电极之间的电介质绝缘以及在两个不同的制造平台(即片对片和卷对卷)下使用IR辐射进行固化的电容器进行观察。

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