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A Wearable Capacitive Sensor Based on Ring/Disk‐Shaped Electrode and Porous Dielectric for Noncontact Healthcare Monitoring

Wearable sensors are gradually enabling decentralized healthcare systems. However, these sensors need to be closely attached to skin, which is unsuitable for long‐term dynamic health monitoring of the patients, such as infants or persons with burn injuries. Here, a wearable capacitive sensor based o...

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Autores principales: Zheng, Ya‐Nan, Yu, Zhe, Mao, Guoyong, Li, Yunyao, Pravarthana, Dhanapal, Asghar, Waqas, Liu, Yiwei, Qu, Shaoxing, Shang, Jie, Li, Run‐Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7175022/
https://www.ncbi.nlm.nih.gov/pubmed/32328287
http://dx.doi.org/10.1002/gch2.201900079
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author Zheng, Ya‐Nan
Yu, Zhe
Mao, Guoyong
Li, Yunyao
Pravarthana, Dhanapal
Asghar, Waqas
Liu, Yiwei
Qu, Shaoxing
Shang, Jie
Li, Run‐Wei
author_facet Zheng, Ya‐Nan
Yu, Zhe
Mao, Guoyong
Li, Yunyao
Pravarthana, Dhanapal
Asghar, Waqas
Liu, Yiwei
Qu, Shaoxing
Shang, Jie
Li, Run‐Wei
author_sort Zheng, Ya‐Nan
collection PubMed
description Wearable sensors are gradually enabling decentralized healthcare systems. However, these sensors need to be closely attached to skin, which is unsuitable for long‐term dynamic health monitoring of the patients, such as infants or persons with burn injuries. Here, a wearable capacitive sensor based on the capacitively coupled effect for healthcare monitoring in noncontact mode is reported. It consists of a ring‐shaped top electrode, a disk‐shaped bottom electrode, and a porous dielectric layer with low permittivity. This unique design enhanced the capacitively coupled effect of the sensor, which enables a high noncontact detectivity of capacitance change. When an object approaches the sensor, its capacitance change (ΔC/C (i) = −38.7%) is 3–5 times higher than that of previously reported sensors. Meanwhile, the sensor is insensitive to the stretching strain and pressure (ΔC/C (i) < 5%) due to the unique ring‐shaped electrode and the incompressible closed cells of the porous dielectric material, respectively. Finally, various human physiological signals (pulse and respiratory) are recorded in noncontact mode, where a person wears loose and soft clothes implanted with the sensor. Thus, it is promising to build smart healthcare clothes based on it to develop wearable decentralized healthcare systems.
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spelling pubmed-71750222020-04-23 A Wearable Capacitive Sensor Based on Ring/Disk‐Shaped Electrode and Porous Dielectric for Noncontact Healthcare Monitoring Zheng, Ya‐Nan Yu, Zhe Mao, Guoyong Li, Yunyao Pravarthana, Dhanapal Asghar, Waqas Liu, Yiwei Qu, Shaoxing Shang, Jie Li, Run‐Wei Glob Chall Full Papers Wearable sensors are gradually enabling decentralized healthcare systems. However, these sensors need to be closely attached to skin, which is unsuitable for long‐term dynamic health monitoring of the patients, such as infants or persons with burn injuries. Here, a wearable capacitive sensor based on the capacitively coupled effect for healthcare monitoring in noncontact mode is reported. It consists of a ring‐shaped top electrode, a disk‐shaped bottom electrode, and a porous dielectric layer with low permittivity. This unique design enhanced the capacitively coupled effect of the sensor, which enables a high noncontact detectivity of capacitance change. When an object approaches the sensor, its capacitance change (ΔC/C (i) = −38.7%) is 3–5 times higher than that of previously reported sensors. Meanwhile, the sensor is insensitive to the stretching strain and pressure (ΔC/C (i) < 5%) due to the unique ring‐shaped electrode and the incompressible closed cells of the porous dielectric material, respectively. Finally, various human physiological signals (pulse and respiratory) are recorded in noncontact mode, where a person wears loose and soft clothes implanted with the sensor. Thus, it is promising to build smart healthcare clothes based on it to develop wearable decentralized healthcare systems. John Wiley and Sons Inc. 2020-03-18 /pmc/articles/PMC7175022/ /pubmed/32328287 http://dx.doi.org/10.1002/gch2.201900079 Text en © 2020 The Authors. Published by WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Zheng, Ya‐Nan
Yu, Zhe
Mao, Guoyong
Li, Yunyao
Pravarthana, Dhanapal
Asghar, Waqas
Liu, Yiwei
Qu, Shaoxing
Shang, Jie
Li, Run‐Wei
A Wearable Capacitive Sensor Based on Ring/Disk‐Shaped Electrode and Porous Dielectric for Noncontact Healthcare Monitoring
title A Wearable Capacitive Sensor Based on Ring/Disk‐Shaped Electrode and Porous Dielectric for Noncontact Healthcare Monitoring
title_full A Wearable Capacitive Sensor Based on Ring/Disk‐Shaped Electrode and Porous Dielectric for Noncontact Healthcare Monitoring
title_fullStr A Wearable Capacitive Sensor Based on Ring/Disk‐Shaped Electrode and Porous Dielectric for Noncontact Healthcare Monitoring
title_full_unstemmed A Wearable Capacitive Sensor Based on Ring/Disk‐Shaped Electrode and Porous Dielectric for Noncontact Healthcare Monitoring
title_short A Wearable Capacitive Sensor Based on Ring/Disk‐Shaped Electrode and Porous Dielectric for Noncontact Healthcare Monitoring
title_sort wearable capacitive sensor based on ring/disk‐shaped electrode and porous dielectric for noncontact healthcare monitoring
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7175022/
https://www.ncbi.nlm.nih.gov/pubmed/32328287
http://dx.doi.org/10.1002/gch2.201900079
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