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Flexible, All Metal-Oxide Capacitors for Printed Electronics

机译:用于印刷电子的柔性全金属氧化物电容器

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In this research the use of micron and nanoparticle metal oxide materials for conductive and dielectric screen printing inks were investigated. Screen printed parallel plate capacitors were fabricated to research the applications of these inks. Conductive, micron-particle indium tin oxide (ITO) screen printing inks were formulated for the conductive plates. A dielectric, nanoparticle aluminium oxide (Al203) ink was formulated for the dielectric barrier. Capacitors of varying sizes (1cm2 - 9cm2) were printed onto flexible polyethylene terephthalate (PET) sheets. The effect of dielectric layer thickness was investigated to find the optimal fabrication process. Impedance analysis was performed on the capacitors to characterise both the performance of the capacitors and the dielectric ink. Analysis of the capacitors was also performed under flex (up to 30% strain) to investigate the effect of bending on the electronic properties. The capacitors were found to be highly stable under bending enabling their use in flexible printed electronics applications.
机译:在这项研究中,研究了微米级和纳米级金属氧化物材料在导电和介电丝网印刷油墨中的用途。制造丝网印刷的平行板电容器来研究这些油墨的应用。将导电的微米级氧化铟锡(ITO)丝网印刷油墨配制用于导电板。介电纳米颗粒氧化铝(Al 2 03)将油墨配制为介质阻挡层。各种尺寸的电容器(1厘米 2 -9厘米 2 )被印刷到柔性聚对苯二甲酸乙二酯(PET)片上。研究了介电层厚度的影响,以找到最佳的制造工艺。对电容器进行了阻抗分析,以表征电容器和介电油墨的性能。电容器的分析也在挠曲(高达30%的应变)下进行,以研究弯曲对电子性能的影响。发现电容器在弯曲下是高度稳定的,从而使其可用于柔性印刷电子应用。

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