Jaehyeon Ryu, Yi Qiang, Dongyeol Jang, Junyeub Suh, H. Fang
2022.12.1Technical Digest - International Electron Devices Meeting
tlooto Summary
A bilayer-nanomesh-based transparent microelectrode array (MEA) on ultrathin Polydimethylsiloxane (PDMS) substrate is demonstrated, successfully fabricated with total device thickness down to only $10, with excellent electrode performance, device reliability, and optical transparency.
Abstract
Transparent electrode arrays have emerged as promising platforms for neural interfacing by enabling simultaneous electrophysiological recording and optical measurements. Soft and thin devices also have compelling advantages due to their less mechanical mismatch with the brain tissue. Here we demonstrate a bilayer-nanomesh-based transparent microelectrode array (MEA) on ultrathin Polydimethylsiloxane (PDMS) substrate. We have successfully fabricated 32-channel, bilayer-nanomesh microelectrodes on PDMS with total device thickness down to only $10 \mu \text{m}$. In addition to excellent electrode performance, device reliability, and optical transparency, we have also demonstrated successful hydrophilic surface modification and great sterilization compatibility.
Citation format
RYU, Jaehyeon, et al. Bilayer-nanomesh transparent neuroelectrodes on 10μm-thick PDMS. Technical Digest - International Electron Devices Meeting, 2022, 2022: 29.3.1–29.3.4.