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Phase-separated stretchable conductive nanocomposite to reduce contact resistance of skin electronics

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Title
Phase-separated stretchable conductive nanocomposite to reduce contact resistance of skin electronics
Author(s)
Hyunjin Lee; Hye Jin Kim; Yoonsoo Shin; Dae-Hyeong Kim
Publication Date
2024-01
Journal
Scientific Reports, v.14, no.1
Publisher
Nature Publishing Group
Abstract
Skin electronics, facilitating a high-quality interface between external devices and human skin for recording physiological and/or electrophysiological signals as well as delivering external electrical and/or mechanical energy into the human body, has shown significant progress. However, achieving mechanically conformal contact and electrically low contact resistance at the device-skin interface remains challenging. Here, we propose a material strategy to potentially address such an issue by using phase separation of silver nanowires and silver nanoparticles (Ag NWs and Ag NPs) within a stretchable conductive nanocomposite (NC). This phase-separated NC ensures low contact resistance and high conductivity, which are key requirements in skin electronics, while maintaining excellent mechanical contact with the skin. To achieve phase separation, we hydrophobically treated the surfaces of Ag NWs and Ag NPs. Then, as the NC solidified, the solvent contained in the NC was slowly evaporated to sufficiently precipitate Ag NPs within the NC. As a result, the phase-separated NC exhibited high conductivity (~ 18,535 S cm−1), excellent stretchability (~ 80%), and low contact resistance on both the top and bottom NC surfaces (average ~ 0.132 Ω). The phase-separated NC has enabled implementation of high performance skin-mounted devices, including strain sensors, electrophysiological sensors, and a wearable heater. © 2024, The Author(s).
URI
https://pr.ibs.re.kr/handle/8788114/15399
DOI
10.1038/s41598-024-51980-1
ISSN
2045-2322
Appears in Collections:
Center for Nanoparticle Research(나노입자 연구단) > 1. Journal Papers (저널논문)
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