Photoactivable Surfactant Design for In Situ Stabilization of Hydrogel Bioelectronics

S Seungyeon Lee (1The Ohio State University, Hematology, Columbus, United States) D Donggyun Lee S Soo‐Hwan Lee (Biomaterials Research Center Korea Institute of Science and Technology (KIST) Seoul Republic of Korea) Y Yuri Lee J Jooyeun Chong (Department of Chemistry Seoul National University Seoul Republic of Korea) G Gunho Chang (Department of Chemistry Seoul National University Seoul Republic of Korea) H Hyunjun Kim A Aejin Kim (Korea Institute of Oriental Medicine) K Kyung Su Kim J Jahyun Koo H Hyojin Lee J Jiheong Kang

Abstract

ABSTRACT Conductive polymer hydrogels offer unique advantages for soft, stretchable biointerfaces by combining tissue‐like mechanics with high ionic conductivity. However, their reliable integration with hydrophobic substrates and encapsulants essential for electrical insulation and chemical protection remains a major challenge due to poor wetting and interfacial delamination in aqueous environments. Here, we report a facile strategy for the in situ stabilization of conductive polymer hydrogels on hydrophobic substrates using a photoactivable surfactant (PAS). PAS reduces interfacial surface energy and, upon UV activation, forms covalent bonds with stretchable substrates, thereby yielding strong adhesion and long‐term stability under wet conditions. This molecular design also enables photopatterning of hydrogels without compromising performance. Notably, PAS not only stabilizes and patterns conductive hydrogels in situ but also enhances their mechanical and electrical properties. PAS‐integrated hydrogel biointerfaces exhibit robust operation in aqueous environments and demonstrate reliable in vivo electromyographic (EMG) signal recording, underscoring the potential of this approach for next‐generation implantable and wearable bioelectronics.

Article Details

Volume / Issue Vol. 1, Issue 1
Published July 22, 2026
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (12)

S

Seungyeon Lee

1The Ohio State University, Hematology, Columbus, United States

D

Donggyun Lee

S

Soo‐Hwan Lee

Biomaterials Research Center Korea Institute of Science and Technology (KIST) Seoul Republic of Korea

Y

Yuri Lee

J

Jooyeun Chong

Department of Chemistry Seoul National University Seoul Republic of Korea

G

Gunho Chang

Department of Chemistry Seoul National University Seoul Republic of Korea

H

Hyunjun Kim

A

Aejin Kim

Korea Institute of Oriental Medicine

K

Kyung Su Kim

J

Jahyun Koo

H

Hyojin Lee

J

Jiheong Kang