Laser‐Scribed Graphene Oxide Electrodes for Soft Electroactive Devices
Djen T. Kühnel, Jonathan Rossiter, Charl F. J. Faul
- Year
- 2018
- Citations
- 17
Abstract
Abstract Inherently soft electroactive devices will enable a range of novel applications in biomedical, wearable, and robotics technology. In this area, dielectric elastomers (DEs) are particularly promising electromechanical transducers. One major challenge for DEs and other soft devices is the fabrication and precise patterning of thin stretchable conductors. Conventional methods such as pad printing and spray deposition require prefabricated molds or stencils, and inkjet printing relies on organic solvents to tune the rheology of inks. Here, laser‐scribed graphene oxide (LSGO) is proposed to fabricate patterned, stretchable electrodes for DE actuators (DEAs). The method uses a low‐cost laser engraver that can produce arbitrary patterns with 0.1 mm resolution. The process is green (free of organic solvents) and does not require molds or stencils. DEAs with regular and complex LSGO electrodes are fabricated and characterized. In a direct comparison with DEAs made using conductive carbon grease as electrode material, LSGO DEAs show higher maximum actuation strain. Areal strain of 8.8% is observed in a planar LSGO DEA with patterned electrodes.
Keywords
Related papers
Statistical Learning Theory
Yuhai Wu, Vladimir Vapnik
1999
Fractional Differential Equations
Igor Podlubný
2025
Applied Nonlinear Control
Jean-Jacques Slotine, Weiping Li
1991
Genetic Programming: On the Programming of Computers by Means of Natural Selection
John R. Koza
1992