The ink-jet printed flexible interdigital capacitors: manufacturing and ageing tests

IF 2.8 4区 工程技术 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Flexible and Printed Electronics Pub Date : 2023-09-07 DOI:10.1088/2058-8585/acf773
Milena Kiliszkiewicz, Laura Jasińska, Andrzej Dziedzic
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Abstract

Correct operation of electronic circuits (including those made with the ink-jet printing technique) requires the electrical parameters of the structures to be constant or to be changeable, but in a predictable way. Due to that, the flexible, ink-jet printed interdigital capacitors (IDSs) were made and then tested in various conditions. We used the conductive silver-based Amepox AX JP-60n ink. As a substrate, we chose the transparent, flexible Melinex OD foil with a thickness of 125 µm. The IDCs were designed and their capacitances were simulated using Comsol Multiphysics Software. Then the test structures were fabricated by the ink-jet printing process using Dimatix DMP 2831 printer. The printed structures were subjected to environmental exposures in a climate chamber to check the influence of temperature and humidity on the tested samples. The IDCs were also subjected to cyclic bending and straightening tests to analyze the outflow of tensile forces on the printed structures, which are exposed to the common factors, that could diminish the quality of the printed and flexible devices. Due to the small capacitance values of the designed and made IDSs, the measurements showed the key importance of the measuring table on which flexible substrates with IDC capacitors were placed for their capacitance value. Performed tests also demonstrated that in most cases, the capacitors are characterized by an increase in capacitance by a few to a dozen or so % after the ageing tests. Obtained results could be a good groundwork for further research, that will include ways of preventing the creation of discontinuities—or minimizing their impact on the printed device performance.
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喷墨印刷柔性数字间电容器:制造与老化试验
电子电路(包括用喷墨印刷技术制作的电路)的正确操作要求结构的电气参数是恒定的或可变化的,但以可预测的方式。因此,柔性喷墨印刷数字间电容器(IDSs)被制造出来,然后在各种条件下进行测试。我们使用导电银基Amepox AX JP-60n油墨。作为衬底,我们选择了透明、柔性的Melinex OD箔,厚度为125µm。采用Comsol多物理场软件对直流直流电容器的电容进行了仿真。然后利用Dimatix DMP 2831打印机采用喷墨打印工艺制作测试结构。将打印的结构置于气候室中进行环境暴露,以检查温度和湿度对测试样品的影响。idc还进行了循环弯曲和矫直测试,以分析受常见因素影响的印刷结构上的拉力流出,这些因素可能会降低印刷和柔性器件的质量。由于设计和制造的IDC电容器的电容值很小,因此测量结果表明,放置带有IDC电容器的柔性衬底的测量表对其电容值至关重要。进行的测试还表明,在大多数情况下,电容器的特点是在老化测试后电容增加了几个到十几个左右。获得的结果可以为进一步的研究奠定良好的基础,这将包括防止产生不连续的方法,或者最小化它们对印刷设备性能的影响。
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来源期刊
Flexible and Printed Electronics
Flexible and Printed Electronics MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
4.80
自引率
9.70%
发文量
101
期刊介绍: Flexible and Printed Electronics is a multidisciplinary journal publishing cutting edge research articles on electronics that can be either flexible, plastic, stretchable, conformable or printed. Research related to electronic materials, manufacturing techniques, components or systems which meets any one (or more) of the above criteria is suitable for publication in the journal. Subjects included in the journal range from flexible materials and printing techniques, design or modelling of electrical systems and components, advanced fabrication methods and bioelectronics, to the properties of devices and end user applications.
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