• Skip to main content
  • Skip to secondary menu
  • Skip to primary sidebar
  • Skip to footer
Engineering Designer Magazine

Engineering Designer

  • Home
  • Technology
  • Education
  • Sustainability
  • Materials
  • Medical
  • Construction
  • Advertise
  • iED
You are here: Home / Materials / Soft, stretchy electrode simulates touch sensations

Soft, stretchy electrode simulates touch sensations

July 1, 2024 by Geordie Torr

A team of researchers led by the University of California San Diego has developed a soft, stretchy electronic device capable of simulating the feeling of pressure or vibration when worn on the skin. The device represents a step towards creating haptic technologies that can reproduce a more varied and realistic range of touch sensations.

The device consists of a soft, stretchable electrode attached to a silicone patch. It can be worn like a sticker on either the fingertip or forearm. The electrode, in direct contact with the skin, is connected to an external power source via wires. By sending a mild electrical current through the skin, the device can produce sensations of either pressure or vibration depending on the signal’s frequency.

Advertisement

‘Our goal is to create a wearable system that can deliver a wide gamut of touch sensations using electrical signals – without causing pain for the wearer,’ said Rachel Blau, a nano-engineering postdoctoral researcher at the UC San Diego Jacobs School of Engineering.

Existing technologies that recreate a sense of touch through electrical stimulation often induce pain due to the use of rigid metal electrodes, which don’t conform well to the skin. The air gaps between these electrodes and the skin can result in painful electrical currents.

Advertisement

To address this issue, Blau and a team of researchers led by Darren Lipomi, a professor in the Aiiso Yufeng Li family Department of Chemical and Nano Engineering at UC San Diego, developed a soft, stretchy electrode that seamlessly conforms to the skin.

The electrode is made of a new polymer material constructed from the building blocks of two existing polymers: a conductive, rigid polymer known as PEDOT:PSS, and a soft, stretchy polymer known as PPEGMEA. ‘By optimising the ratio of these [polymer building blocks], we molecularly engineered a material that is both conductive and stretchable,’ said Blau.

Advertisement

The polymer electrode is laser-cut into a spring-shaped, concentric design and attached to a silicone substrate. ‘This design enhances the electrode’s stretchability and ensures that the electrical current targets a specific location on the skin, thus providing localised stimulation to prevent any pain,’ said Abdulhameed Abdal, a PhD student in the Department of Mechanical and Aerospace Engineering at UC San Diego. Abdal and Blau worked on the synthesis and fabrication of the electrode with UC San Diego nano-engineering undergraduate students Yi Qie, Anthony Navarro and Jason Chin.

In tests, the electrode device was worn on the forearm by ten participants. In collaboration with behavioural scientists and psychologists at the University of Amsterdam, the researchers first identified the lowest level of electrical current detectable. They then adjusted the frequency of the electrical stimulation, allowing participants to experience sensations categorised as either pressure or vibration.

‘We found that by increasing the frequency, participants felt more vibration rather than pressure,’ said Abdal. ‘This is interesting because biophysically, it was never known exactly how current is perceived by the skin.’

Advertisement

The new insights could pave the way for the development of advanced haptic devices for applications such as virtual reality, medical prosthetics and wearable technology.

The research has been published in Science Robotics.

Filed Under: Materials, Medical, Technology

Primary Sidebar

SUBSCRIBE And get a FREE Magazine

Want a FREE magazine each and every month jam-packed with the latest engineering and design news, views and features?

ED Update Magazine

Simply let us know where to send it by entering your name and email below. Immediate access.

Trending

Language study is helping student engineers prepare for work in a global context

New guide on design and construction using mass timber published

3D printing soft robots

Origami-inspired space structure is compact when launched, expanded in space

Machine learning designs mirrors for high-power lasers

Optimising robotic joints

Sensor gloves could help robots get to grips with human tasks

Turning seawater into drinking water via sunlight – without electricity

Loughborough University partners with the Manufacturing Technology Centre to accelerate hydrogen-compatible systems

NASA tests technology offering potential fuel savings for commercial aviation

Footer

About Engineering Designer

Engineering Designer is the quarterly journal of the Insitution of Engineering Designers.

It is produced by the IED for our Members and for those who have an interest in engineering and product design, as well as CAD users.

Click here to learn more about the IED.

Other Pages

  • Contact us
  • About us
  • Privacy policy
  • Terms
  • Institution of Engineering Designers

Search

Tags

ied

Copyright © 2026 · Site by Syon Media