3D Printing of Self-Wiring Conductive Ink with High Stretchability and Stackability for Customized Wearable Devices

  • Yoon, In Seon
  • Oh, Youngsu
  • Kim, Sun Hong
  • Choi, Junhee
  • Hwang, Yooji
  • ... Ju, Byeong-Kwon
  • 외 1명
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초록

The progress in 3D printing research has led to significant developments ranging from customized printing to rapid prototyping. However, the 3D printing of electrodes, especially stretchable electrodes for the fabrication of 3D printable electronic devices, is challenging due to the inherent weakness with respect to the printing material. A novel preparation method is reported for a 3D printable conductive ink with a self-wiring effect during heat treatment, which pushes the silicone rubber outward and results in the accumulation of the conductors within the wire. This effect results in the formation of a polymer shell around the conductor, thus yielding conductors with larger stretchability and soft passivation characteristics. The conductive ink is prepared via the following steps: i) mixing of conductive filler, silicone rubbers, and solvent; followed by ii) soft heat treatment for soft curing and solvent evaporation. Furthermore, a capacitive sensor is fabricated using this dielectric polymer layer. As a demonstration, a mouse controller is fabricated using a capacitive sensor array prepared using the conductors developed in this study.

키워드

3D printingAg flakecapacitive sensorstretchable conductorswiringPRINTABLE ELASTIC CONDUCTORSSTRAIN SENSORSELECTRODESFABRICATIONFACILE
제목
3D Printing of Self-Wiring Conductive Ink with High Stretchability and Stackability for Customized Wearable Devices
저자
Yoon, In SeonOh, YoungsuKim, Sun HongChoi, JunheeHwang, YoojiPark, Cheol HweeJu, Byeong-Kwon
DOI
10.1002/admt.201900363
발행일
2019-09
유형
Article
저널명
Advanced Materials Technologies
4
9