We report on low-energy metal ion implantation by filtered cathodic vacuum arc to create highly deformable electrodes on polydimethylsiloxane (PDMS) membranes. Implantation leads to the creation of nanometer-size clusters in the first 50 nm below the surface. When the elastomer is stretched, these small clusters can move relative to one another, maintaining electrical conduction at strains of up to 175%. Sheet resistance vs. ion dose, resistance vs. strain, time stability of the resistance, as well as the impact of implantation on the elastomer’s Young’s modulus are investigated for gold, palladium and titanium implantations. Of the three tested metals, gold has the best performance, combining low and stable surface resistance (0.1 − 10 kOh...
A key element in stretchable actuators, sensors and systems based on elastomer materials are complia...
Stretchable and compliant electrodes on polydimethylsiloxane (PDMS) are efficiently fabricated by th...
We report on the first ion-implanted dielectric electroactive polymer actuator that was successfully...
AbstractMetal ion implantation is shown here as an effective technique to fabricate highly compliant...
This article presents metal ion implantation as an alternative technique to fabricate compliant elec...
We present the design, fabrication process and characterization of multilayer miniaturized polydimet...
The miniaturization of dielectric elastomer actuators requires compliant electrodes that are clean, ...
One of the key factors to obtain large displacements and high efficiency with dielectric electroacti...
AbstractDielectric Elastomer Actuators (DEA) are compliant devices capable of generating large perce...
This study reports a facile fabrication method for highly conductive stretchable electrodes composed...
The first high-resolution transmission electron microscopy (TEM) cross-section images of flexible el...
Dielectric elastomer actuators (DEAs) are flexible lightweight actuators that can generate strains o...
Poly-di-methylsilixoxane (PDMS) thick films approximately 4 μm in thickness were spin coated onto a ...
We report on the use of the bulge test method to characterize the mechanical properties of miniaturi...
Thin gold films on silicone display large reversible change in electrical resistance upon stretching...
A key element in stretchable actuators, sensors and systems based on elastomer materials are complia...
Stretchable and compliant electrodes on polydimethylsiloxane (PDMS) are efficiently fabricated by th...
We report on the first ion-implanted dielectric electroactive polymer actuator that was successfully...
AbstractMetal ion implantation is shown here as an effective technique to fabricate highly compliant...
This article presents metal ion implantation as an alternative technique to fabricate compliant elec...
We present the design, fabrication process and characterization of multilayer miniaturized polydimet...
The miniaturization of dielectric elastomer actuators requires compliant electrodes that are clean, ...
One of the key factors to obtain large displacements and high efficiency with dielectric electroacti...
AbstractDielectric Elastomer Actuators (DEA) are compliant devices capable of generating large perce...
This study reports a facile fabrication method for highly conductive stretchable electrodes composed...
The first high-resolution transmission electron microscopy (TEM) cross-section images of flexible el...
Dielectric elastomer actuators (DEAs) are flexible lightweight actuators that can generate strains o...
Poly-di-methylsilixoxane (PDMS) thick films approximately 4 μm in thickness were spin coated onto a ...
We report on the use of the bulge test method to characterize the mechanical properties of miniaturi...
Thin gold films on silicone display large reversible change in electrical resistance upon stretching...
A key element in stretchable actuators, sensors and systems based on elastomer materials are complia...
Stretchable and compliant electrodes on polydimethylsiloxane (PDMS) are efficiently fabricated by th...
We report on the first ion-implanted dielectric electroactive polymer actuator that was successfully...