Stretchable, Skin-Breathable, and Ultrasensitive Respiration Sensor Using Graphite on Paper With Smart Structures

IEEE Sensors Journal - Tập 22 Số 17 - Trang 16804-16810 - 2022
Thanh Nguyen1,2,3, Nishith Shivakumar Shagle1, Hieu Vu3, Hung Nguyen3, Hoang-Phuong Phan4, Van Thanh Dau5, Pingan Song2, Hao Wang1,2, Tran Dang Quoc6, Duy Tien Nguyen6, Nam-Trung Nguyen3, Dzung Viet Dao3,5, Toan Dinh1,2,3
1School of Engineering, University of Southern Queensland, Toowoomba, QLD, Australia
2Centre for Future Materials, University of Southern Queensland, Toowoomba, QLD, Australia
3Queensland Micro- and Nanotechnology Centre, Griffith University, Nathan, QLD, Australia
4School of Mechanical and Manufacturing Engineering, The University of New South Wales Sydney, Sydney, NSW, Australia
5School of Engineering and Built Environment, Griffith University, Southport, QLD, Australia

Tóm tắt

Healthy sleep is an important indicator of good physical and mental health. The current technology employed for monitoring sleep quality is typically expensive and invasive, which demands innovations in respiration monitoring. In addition, recent effort in developing wearable respiration sensors has faced great challenges in concurrently obtaining low cost, high stretchability, and high sensitivity. Herein, we demonstrate a simple fabrication strategy to construct low-cost, stretchable, skin-breathable and ultrasensitive respiration sensors using pencil drawing, electrode pasting, and laser cutting methods. With smart designs, the sensors exhibited high sensitivity, good stability, decent skin-breathability and capability to detect respiration rate and depth in real-time. The sensors fabricated by the simple low-cost method in this study can be utilized to measure sleep quality, providing warning signals for apnea and sleep disorders. The proposed technology holds promise for developing cost-effective wearable ultrasensitive sensors for sleep quality monitoring.

Từ khóa

#Airflow sensor #graphite on paper #respiration monitoring #wearable and stretchable electronics #smart structure

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