Conformal graphene coatings on ordinary fabrics for wearable electronic devices

Z Zibo Chen (School of Life Sciences) Y Yunfa Si X Xiaobin Liao R Rui Fang Z Zhen Li W Weimingyang Tan S Sichang Wang Y Yongyi Ji W Wei Qian H Huaqiang Fu L Lun Li R Runquan Li M Mingtao Chen (Westlake University Research Center for Industries of the Future) B Bo Liu Z Zhugen Yang (Cranfield Water Science Institute, Cranfield University) J Jiaxing Huang (Department of Cardiology) D Daping He (School of Materials Science and Engineering)

Abstract

Abstract Dip-coating ordinary fabrics with conductive macromolecules holds promise for mass-production of next-generation wearable electronics but faces an interaction dilemma in high-entangled fabrics: weak interactions for uniform penetration versus strong for stable coating. Herein, we present a temporal decoupling strategy, designing stage-specific interaction strengths to achieve uniform graphene oxide penetration and robust reduced graphene oxide adhesion. Using the triphilic surfactant Triton X-100 as a representative system, this strategy enables the fabrication of fabrics with conductivity (283.1 S m −1 ) and comprehensive wearability (hydrophilicity, air permeability, washability, bacteriostasis, and biocompatibility) over 200-meter roll. This combination of conductivity and production scale outperforms current competitors by over 100-fold, with over 10-time-lower cost (0.4 US$ m −2 ). This strategy is universally applicable to various ordinary fabrics and enables multifunctional applications, including electromagnetic interference shielding and Joule heating. Our work offers a scalable, universal and low-cost methodology for fabric-based wearable electronics with immediate potential for industrial adoption.

Article Details

Volume / Issue Vol. 17, Issue 1
Published May 18, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (17)

Z

Zibo Chen

School of Life Sciences

Y

Yunfa Si

X

Xiaobin Liao

R

Rui Fang

Z

Zhen Li

W

Weimingyang Tan

S

Sichang Wang

Y

Yongyi Ji

W

Wei Qian

H

Huaqiang Fu

L

Lun Li

R

Runquan Li

M

Mingtao Chen

Westlake University Research Center for Industries of the Future

B

Bo Liu

Z

Zhugen Yang

Cranfield Water Science Institute, Cranfield University

J

Jiaxing Huang

Department of Cardiology

D

Daping He

School of Materials Science and Engineering