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A double-layered liquid metal-based electrochemical sensing system on fabric as a wearable detector for glucose in sweat

Engineering and Technology

A double-layered liquid metal-based electrochemical sensing system on fabric as a wearable detector for glucose in sweat

X. Chen, H. Wan, et al.

Discover a groundbreaking miniaturized and flexible electrochemical detection system on fabric, leveraging liquid metal for enhanced performance in health monitoring. This innovative research by Xuanqi Chen, Hao Wan, Rui Guo, Xinpeng Wang, Yang Wang, Caicai Jiao, Kang Sun, and Liang Hu showcases the system's ability to detect glucose in sweat, offering exciting possibilities for wearable technology and point-of-care testing.

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~3 min • Beginner • English
Abstract
Integrated electrochemical sensing platforms in wearable devices have great prospects in biomedical applications. However, traditional electrochemical platforms are generally fabricated on airtight printed circuit boards, which lack sufficient flexibility, air permeability, and conformability. Liquid metals at room temperature with excellent mobility and electrical conductivity show high promise in flexible electronics. This paper presents a miniaturized liquid metal-based flexible electrochemical detection system on fabric, which is intrinsically flexible, air-permeable, and conformable to the body. Taking advantage of the excellent fluidity and electrical connectivity of liquid metal, a double-layer circuit is fabricated that significantly miniaturizes the size of the whole system. The linear response, time stability, and repeatability of this system are verified by resistance, stability, image characterization, and potassium ferricyanide tests. Finally, glucose in sweat can be detected at the millimolar level using this sensing system, which demonstrates its great potential for wearable and portable detection in biomedical fields, such as health monitoring and point-of-care testing.
Publisher
Microsystems & Nanoengineering
Published On
Jan 01, 2022
Authors
Xuanqi Chen, Hao Wan, Rui Guo, Xinpeng Wang, Yang Wang, Caicai Jiao, Kang Sun, Liang Hu
Tags
electrochemical detection
wearable technology
liquid metal
glucose detection
sweat monitoring
flexibility
biomedical engineering
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