Garment embedded sweat-activated batteries in wearable electronics for continuous sweat monitoring

Author:

Huang XingcanORCID,Liu Yiming,Zhou JingkunORCID,Nejad Sina Khazaee,Wong Tsz Hung,Huang Ya,Li Hu,Yiu Chun Ki,Park WooyoungORCID,Li Jian,Su Jingyou,Zhao Ling,Yao KuanmingORCID,Wu Mengge,Gao Zhan,Li Dengfeng,Li Jiyu,Shi Rui,Yu XingeORCID

Abstract

AbstractThin, soft, and skin-integrated electronic system has great advantages for realizing continuous human healthcare monitoring. Here, we report an ultra-thin, flexible, and garment-based microelectronics powered by sweat-activated batteries (SABs) and applications of powering biosensors and microelectronic systems for real time sweat monitoring. The SAB cell is ultra-thin (1.25 mm) with excellent biocompatibility. The SAB has good electricity output with high capacity (14.33 mAh) and maximum power density (3.17 mW cm−2) after being activated by the sweat volume of 0.045 mL cm−2, which could continuously power 120 light emitting diodes over 3 h. The outputs could maintain stable after repeatable bending. Wireless microelectronics system could be continuously powered by the SABs for 3 h to monitor sweat and physiological information, including sweat Na+ concentration, pH, and skin impedance. The reported integrated system provides a potential for solving the power issues of flexible wearable electronics and realizing personalized medicine.

Publisher

Springer Science and Business Media LLC

Subject

Electrical and Electronic Engineering,General Materials Science

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