Ultra-conformal drawn-on-skin electronics for multifunctional motion artifact-free sensing and point-of-care treatment

Author:

Ershad Faheem,Thukral Anish,Yue Jiping,Comeaux Phillip,Lu Yuntao,Shim Hyunseok,Sim KyoseungORCID,Kim Nam-In,Rao ZhoulyuORCID,Guevara Ross,Contreras Luis,Pan Fengjiao,Zhang Yongcao,Guan Ying-Shi,Yang Pinyi,Wang Xu,Wang Peng,Wu Xiaoyang,Yu CunjiangORCID

Abstract

AbstractAn accurate extraction of physiological and physical signals from human skin is crucial for health monitoring, disease prevention, and treatment. Recent advances in wearable bioelectronics directly embedded to the epidermal surface are a promising solution for future epidermal sensing. However, the existing wearable bioelectronics are susceptible to motion artifacts as they lack proper adhesion and conformal interfacing with the skin during motion. Here, we present ultra-conformal, customizable, and deformable drawn-on-skin electronics, which is robust to motion due to strong adhesion and ultra-conformality of the electronic inks drawn directly on skin. Electronic inks, including conductors, semiconductors, and dielectrics, are drawn on-demand in a freeform manner to develop devices, such as transistors, strain sensors, temperature sensors, heaters, skin hydration sensors, and electrophysiological sensors. Electrophysiological signal monitoring during motion shows drawn-on-skin electronics’ immunity to motion artifacts. Additionally, electrical stimulation based on drawn-on-skin electronics demonstrates accelerated healing of skin wounds.

Funder

United States Department of Defense | United States Navy | Office of Naval Research

U.S. Department of Health & Human Services | NIH | National Institute of Biomedical Imaging and Bioengineering

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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