Fabric-substrated capacitive biopotential sensors enhanced by dielectric nanoparticles

Wearable biopotential sensing devices are essential to long-term and real-time monitoring of human health. Non-contact, capacitive sensing electrodes prevent potential skin irritations, and are thus beneficial for long-term monitoring. Existing capacitive electrodes are either connected to a separat...

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Veröffentlicht in:Nano research 2021-09, Vol.14 (9), p.3248-3252
Hauptverfasser: Chen, Xiangjun, Gao, Xiaoxiang, Nomoto, Akihiro, Shi, Keren, Lin, Muyang, Hu, Hongjie, Gu, Yue, Zhu, Yangzhi, Wu, Zhuohong, Chen, Xue, Wang, Xinyu, Qi, Baiyan, Zhou, Sai, Ding, Hong, Xu, Sheng
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Sprache:eng
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Zusammenfassung:Wearable biopotential sensing devices are essential to long-term and real-time monitoring of human health. Non-contact, capacitive sensing electrodes prevent potential skin irritations, and are thus beneficial for long-term monitoring. Existing capacitive electrodes are either connected to a separate control circuit via external wires or have limited sensing capacitances, which leads to low signal qualities. This study demonstrates a stretchable capacitive sensing device with integrated electrodes and control electronics, with enhanced signal qualities. The electrodes and the control electronics are fabricated on a common fabric substrate for breathability and strain-limiting protection. The stretchable electrodes are based on an island-bridge design with a stretchability as high as ∼ 100%, and an area ratio as high as ∼ 80%. By using a dielectric calcium copper titanate (CCTO) composite as the adhesive layer, the electrode capacitance can be increased, yielding an enhanced signal-to-noise ratio (SNR) in the acquired biopotentials. This device offers a convenient and comfortable approach for long-term non-contact monitoring of biopotential signals.
ISSN:1998-0124
1998-0000
DOI:10.1007/s12274-021-3458-0