Skip to content
Bioelectronic Synergy Lab

2023

Commentary Nature Materials

Better Electronics from Immiscibility

Illustration of a mouse with a conducting-polymer hydrogel interface, showing stable electrophysiological recordings from the heart on days 0 and 28 and effective electrical stimulation of the sciatic nerve on days 0 and 56.

Authors

Y. Liu , F. Ershad , Y. Tao , C. Yu

Abstract

A bicontinuous conducting polymer hydrogel with high electrical conductivity, stretchability and fracture toughness in physiological environments achieves high-fidelity monitoring and effective stimulation of tissues and organs.

Citation tools

Cite this paper

Y. Liu, F. Ershad, Y. Tao, C. Yu (2023). Better Electronics from Immiscibility. Nature Materials 22(7), 801–802. https://doi.org/10.1038/s41563-023-01602-4

BibTeX · Liu2023BetterElectronics

@article{Liu2023BetterElectronics,
  title = {{Better Electronics from Immiscibility}},
  author = {Y. Liu and F. Ershad and Y. Tao and C. Yu},
  journal = {Nature Materials},
  year = {2023},
  volume = {22},
  number = {7},
  pages = {801--802},
  doi = {10.1038/s41563-023-01602-4},
  url = {https://doi.org/10.1038/s41563-023-01602-4},
}