首页> 外文会议>Materials Research Society Meeting;Symposium on Innovative Interconnects/Electrodes for Advanced Devices, Flexible and Green-Energy Electronics >Infra-red curing methodology for Roll-to-Roll (R2R) manufacturing of conductive electrodes through inkjet technology applicable for devices in the field of flexible electronics
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Infra-red curing methodology for Roll-to-Roll (R2R) manufacturing of conductive electrodes through inkjet technology applicable for devices in the field of flexible electronics

机译:通过喷墨技术的卷 - 红色固化方法,用于通过喷墨技术的导电电极制造,适用于柔性电子领域的装置

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The Inkjet printing technology is a direct patterning technique to deposit functional materials with high precision and accuracy. This deposition technology is often used to manufacture conductive electrodes for different active and passive electronic devices on flexible foils. It is an up-scalable process in terms of printing devices from low (via. Sheet-to-Sheet, S2S platform) to high (via. Roll-to-Roll platform) quantities. For manufacturing of these conductive electrodes and hence electronic devices through the R2R platform, a suitable post-treatment/curing methodology is very much desired. In this work, the focus is concentrated on the curing methodology using the Infra-red radiation for both the inkjet-printed conductive electrodes and insulator layer, for completing a "proof of concept" Metal-Insulator-Metal (MIM) electronic device structure over the R2R platform. A conductive silver nano-particle and a polymeric dielectric ink are used to print the top and bottom conductive electrodes, with a middle insulator layer for the MIM structure respectively. It is observed that not only the printed silver electrode layers (both top and bottom) can be cured with the help of the Infra-red radiation, but also the insulator layer. Additionally, the layers constituting the MIM device structure is cured with the conventional curing methodology which in this case is thermal curing using a convection oven. This curing procedure for the printed functional layers is generally performed for the S2S manufacturing process. The conductive electrodes are then electrically characterized by measuring the sheet resistance (on the foil and dielectric layer) as a function of the un-conventional Infra-red radiation and conventional oven curing methodologies. The cured layers for both the conductive electrodes and insulator layers are morphologically analyzed for the layer thickness and homogeneity. The electrical performance of the cured insulator in form of the obtained capacitance from the MIM passive device is compared for the two mentioned curing methodologies.
机译:喷墨印刷技术是一种直接的图案化技术,可用高精度和精度存放功能材料。该沉积技术通常用于在柔性箔上制造用于不同主动和被动电子设备的导电电极。在从低(通过.Pople-Point,S2S平台)到高(滚动到滚动平台)数量的打印设备方面是一个可升级的过程。为了通过R2R平台制造这些导电电极并因此通过R2R平台的电子设备,非常需要适当的处理后/固化方法。在这项工作中,使用针对喷墨印刷的导电电极和绝缘层的红外线辐射来集中焦点在固化方法上,以完成“概念证明”金属 - 绝缘体 - 金属(MIM)电子设备结构R2R平台。使用导电银纳米颗粒和聚合物介电油墨来打印顶部和底部导电电极,分别具有用于MIM结构的中间绝缘体层。观察到,不仅可以在红外辐射的帮助下可以固化印刷的银电极层(顶部和底部),而且是绝缘体层。另外,构成MIM器件结构的层用传统的固化方法固化,在这种情况下,使用对流炉是热固化。通常对S2S制造过程执行印刷功能层的该固化过程。然后通过测量作为未传统的红外线辐射和常规烘箱固化方法的函数来电导电极通过测量薄片电阻(在箔和介电层上)来电。用于导电电极和绝缘体层的固化层是用于层厚度和均匀性的形态学地分析。将固化绝缘体的电气性能以来自MIM无源装置的所得电容形式的形式进行比较,而是两种提到的固化方法。

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