3D-Printable, Durable, and Wearable Poly(vinyl alcohol)/Nanosilicate/Borax Organohydrogel Fibers for Digital Healthcare Devices

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3
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3

초록

The growing aging population underscores the urgent need for digital healthcare devices that can continuously monitor health and provide early disease diagnosis, rehabilitation, and timely medical intervention. Herein, robust organohydrogel fibers (OHFs) fabricated through continuous wet spinning using an instantaneous gelation system of poly(vinyl alcohol) (PVA) and borax are described. The incorporation of laponite (LP) imparts shear-thinning behavior to the polymer solution and significantly enhances the durability of the hydrogel by simply mixing it with PVA. The resulting organohydrogel fibers exhibit impressive tensile strength (similar to 300 kPa) and high strain capacity (up to 600%), thereby making them ideal for soft robotics applications. The use of glycerol and sodium chloride (NaCl) in a coagulation bath endows the hydrogel with antifreezing properties (effective at -30 degrees C), long-term storage stability (7 days), and high conductivity (4.2 S<middle dot>m-1). With a linear gauge factor of 1.24 for strains up to 800%, these fibers demonstrate exceptional reliability as wearable strain sensors that can accurately detect human movement. The integration of 3D printing technology opens up a broad range of advanced healthcare device applications and offers significant potential for future developments in digital health.

키워드

Nanocomposites; Organohydrogelfibers; 3D Printing; Wearable strain sensors; Health monitoring; ZWITTERIONIC HYDROGEL; ADHESIVE; MOTION; SKIN
제목
3D-Printable, Durable, and Wearable Poly(vinyl alcohol)/Nanosilicate/Borax Organohydrogel Fibers for Digital Healthcare Devices
저자
Kim, Tae In; Park, Yeon Woo; Park, Minha; Kim, Min Hee; Park, Won Ho
DOI
10.1021/acsaelm.5c00573
발행일
2025-06-06
유형
Article
저널명
ACS APPLIED ELECTRONIC MATERIALS
권
7
호
12
페이지
5611 ~ 5621