Conducting Liquid Crystal Elastomer Actuators
Description of the granted funding
The overall goal of this cross-disciplinary project is to combine stretchable electronics with soft robotics in order to build up a novel materials platform that possesses multifunctional electronic control, sensing, and signaling coupled with actuation in response to external stimuli, such as electricity, heat, and light. The stimuli-response of the actuator brings about possibilities towards autonomous action, where it can sense the environment and act accordingly, representing multifunctional materials where the matrix has an active role in functionality. The unique combination of properties and functionalities promises coupled sensing and actuation that could have a transformative impact on the use of liquid crystal elastomers in soft matter applications. The conducting actuators developed herein have promising applications as programmable multifunctional soft microrobotics.
Show moreStarting year
2021
End year
2024
Granted funding
Funder
Research Council of Finland
Funding instrument
Postdoctoral Researcher
Other information
Funding decision number
340103
Fields of science
Materials engineering
Research fields
Funktionaaliset materiaalit, puolijohteet
Identified topics
robots, robotics