Intelligent Soft Sweat Sensors for the Simultaneous Healthcare Monitoring and Safety Warning

Author:

Huang Xingcan1ORCID,Liu Yiming1,Park Wooyoung1,Li Jiyu12,Ma Jie3,Yiu Chun Ki12,Zhang Qiang1,Li Jian12,Wu Pengcheng1,Zhou Jingkun12,Zeng Yuyang1,He Xinxin1,Li Jialin1,Wong Tsz Hung1,Yao Kuanming1,Zhao Ling1,Gao Yuyu12,Shi Rui1,Li Hu1,Li Meixi4,Li Dengfeng12,Zhao Zhao56,Li Yuhang67,Li Heng3,Yu Xinge128ORCID

Affiliation:

1. Department of Biomedical Engineering City University of Hong Kong Kowloong Tong Hong Kong 999077 P. R. China

2. Hong Kong Center for Cerebra‐Cardiovascular Health Engineering Hong Kong Science Park New Territories Hong Kong 999077 P. R. China

3. Department of Building and Real Estate The Hong Kong Polytechnic University Kowloong Tong Hong Kong 999077 P. R. China

4. Leshan Hospital of Traditional Chinese Medicine Leshan Sichuan Province 614000 P. R. China

5. China Special Equipment Inspection and Research Institute Beijing 100029 China

6. Institute of Solid Mechanics Beihang University Beijing 100191 P. R. China

7. Aircraft and Propulsion Laboratory Ningbo Institute of Technology Beihang University (BUAA) Ningbo 315100 P. R. China

8. City University of Hong Kong Shenzhen Research Institute City University of Hong Kong Shenzhen 518057 P. R. China

Abstract

AbstractIntelligent monitoring human physiological information in real time raises the demand for skin‐integrated electronics, as which is a flexible format and can be mounted onto the curved human skin for noninvasive healthcare monitoring. The biofluid such as sweat from skin contains abundant biomarkers reflecting body health conditions. Here, a skin‐integrated sweat monitor with six biosensors embedded for the detection of NH4+, Na+, glucose, pH, skin impedance, and surface temperature is described, which could decode the information in the fresh sweat generated during exercising. Furthermore, the system also includes an innovative safety warning mechanism, which is based on a miniaturized actuator to provide mechanical stimuli, and coupled with six changeable colors light emitting diodes corresponding to the six biosensors for providing simultaneous safety alarming to users. The self‐developed microfluidics system with a hydrophilic surface allows to enhance the sweat collection rate. Meanwhile, microfluidic filters can reduce the interruption of skin debris during biosignal monitoring. These state‐of‐art biosensors can real‐time monitor health related signals with excellent linearity and specificity. The skin‐integrated sweat monitor system exhibits a great potential in human healthcare monitoring and medical treatment.

Funder

City University of Hong Kong

National Natural Science Foundation of China

Science, Technology and Innovation Commission of Shenzhen Municipality

Publisher

Wiley

Subject

Pharmaceutical Science,Biomedical Engineering,Biomaterials

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