Mikkonen Riikka, Puistola Paula, Jönkkäri Ilari, Mäntysalo Matti
Unit of Electrical Engineering, Faculty of Information Technology and Communication Sciences, Tampere University, Korkeakoulunkatu 7, 33720 Tampere, Finland.
Unit of Materials Science and Environmental Engineering, Faculty of Engineering and Natural Sciences, Tampere University, Korkeakoulunkatu 6, 33720 Tampere, Finland.
ACS Appl Mater Interfaces. 2020 Mar 11;12(10):11990-11997. doi: 10.1021/acsami.9b19632. Epub 2020 Feb 28.
In recent years, additive manufacturing of polydimethylsiloxane (PDMS) has gained interest for the development of soft electronics. To build complex electrical devices, fabrication of multilayered structures is required. We propose here a straightforward digital printing fabrication process of silicone rubber-based, multilayered electronics. An inkjet-printable PDMS solution was developed for the digital patterning of elastomeric structures. The silicone ink was used together with a highly conductive silver nanoparticle (Ag NP) ink for the fabrication of all-inkjet-printed multilayered electrical devices. The application of the multilayered circuit board was successful. The sheet resistances were below 0.3 Ω/□, and the conductive layer thickness was less than 1 μm. The electrical insulation between the conductive layers was done by printing a 20-25 μm-thick dielectric PDMS layer selectively on top of the bottommost conductive layer.
近年来,聚二甲基硅氧烷(PDMS)的增材制造在软电子器件的开发中受到关注。为了制造复杂的电气设备,需要制造多层结构。我们在此提出一种基于硅橡胶的多层电子产品的直接数字印刷制造工艺。开发了一种可喷墨打印的PDMS溶液用于弹性体结构的数字图案化。硅酮墨水与高导电性银纳米颗粒(Ag NP)墨水一起用于制造全喷墨打印的多层电气设备。多层电路板的应用取得了成功。薄层电阻低于0.3Ω/□,导电层厚度小于1μm。通过在最底层导电层顶部选择性地印刷一层20 - 25μm厚的介电PDMS层来实现导电层之间的电绝缘。