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Effects of the Particle Size and the Solvent in Printing Inks on the Capacitance of Printed Parallel-Plate Capacitors

机译:印刷油墨中的粒径和溶剂对印刷平行板电容器电容的影响

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Parallel-plate capacitors were fabricated using a printed multi-layer structure in order to determine the effects of particle size and solvent on the capacitance. The conductive-dielectric-conductive layers were sequentially spun using commercial inks and by intermediate drying with the aid of a masking polymeric layer. Both optical and scanning electron microscopy were used to characterize the morphology of the printed layers. The measured capacitance was larger than the theoretically calculated value when ink with small-sized particles was used as the top plate. Furthermore, the use of a solvent whose polarity was similar to that of the underlying dielectric layer enhanced the penetration and resulted in an increase in capacitance. The functional resistance-capacitance low-pass filter was implemented using printed resistors and capacitors, a process that may be scalable in the future.
机译:为了确定粒径和溶剂对电容的影响,使用印刷多层结构制造了平行板电容器。使用市售油墨并借助掩蔽聚合物层进行中间干燥,依次纺出导电-介电层。光学和扫描电子显微镜均用于表征印刷层的形态。当使用小颗粒墨水作为顶板时,测得的电容大于理论计算值。此外,使用极性与下面的电介质层的极性相似的溶剂会增加渗透性并导致电容增加。功能性电阻-电容低通滤波器是使用印刷电阻器和电容器实现的,该过程将来可能会扩展。

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