Microscopic material gradients enable strain-proof flexible bioelectronics

Date 21st, Feb 2025
Source Nanowerk - Nanotechnology Websites

DESCRIPTION

Electronic devices that monitor vital signs often fail when stretched or twisted, limiting their use in medical monitoring. Rigid circuit boards crack, flexible materials degrade, and hybrid solutions break at material interfaces. A new printing technique from University of Notre Dame and UCLA researchers solves this through microscopically graduated materials that maintain electrical performance even when stretched to nearly double their size.