Cargando…

A high-performance wearable pressure sensor based on an MXene/PVP composite nanofiber membrane for health monitoring

Flexible and wearable pressure sensors have attracted extensive attention in domains, such as electronic skin, medical monitoring and human–machine interaction. However, developing a pressure sensor with high sensitivity, mechanical stability and a wide detection range remains a huge challenge. In t...

Descripción completa

Detalles Bibliográficos
Autores principales: Ren, Mengna, Sun, Zhongsen, Zhang, Mengqi, Yang, Xiaojun, Guo, Dedong, Dong, Shuheng, Dhakal, Rajendra, Yao, Zhao, Li, Yuanyue, Kim, Nam Young
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9470067/
https://www.ncbi.nlm.nih.gov/pubmed/36133328
http://dx.doi.org/10.1039/d2na00339b
_version_ 1784788771202400256
author Ren, Mengna
Sun, Zhongsen
Zhang, Mengqi
Yang, Xiaojun
Guo, Dedong
Dong, Shuheng
Dhakal, Rajendra
Yao, Zhao
Li, Yuanyue
Kim, Nam Young
author_facet Ren, Mengna
Sun, Zhongsen
Zhang, Mengqi
Yang, Xiaojun
Guo, Dedong
Dong, Shuheng
Dhakal, Rajendra
Yao, Zhao
Li, Yuanyue
Kim, Nam Young
author_sort Ren, Mengna
collection PubMed
description Flexible and wearable pressure sensors have attracted extensive attention in domains, such as electronic skin, medical monitoring and human–machine interaction. However, developing a pressure sensor with high sensitivity, mechanical stability and a wide detection range remains a huge challenge. In this work, a flexible capacitive pressure sensor, based on a Ti(3)C(2)T(x) (MXene)/polyvinyl pyrrolidone (PVP) composite nanofiber membrane (CNM), prepared via an efficient electrospinning process, is presented. The experimental results show that even a small mass fraction of MXene can effectively decrease the compression modulus of the PVP nanofiber membrane, thus enhancing the sensing performance. Specifically, the sensor based on (0.1 wt% MXene)/PVP CNM has a high sensitivity (0.5 kPa(−1) at 0–1.5 kPa), a fast response/recovery time (45/45 ms), a wide pressure detection range (0–200 kPa), a low detection limit (∼9 Pa) and an excellent mechanical stability (8000 cycles). Due to its superior performance, the sensor can monitor subtle changes in human physiology and other signals, such as pulse, respiration, human joint motions and airflow. In addition, a 4 × 4 sensor array is fabricated that can accurately map the shape and position of objects with good resolution. The high-performance flexible pressure sensor, as developed in this work, shows good application prospects in advanced human–computer interface systems.
format Online
Article
Text
id pubmed-9470067
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher RSC
record_format MEDLINE/PubMed
spelling pubmed-94700672022-09-20 A high-performance wearable pressure sensor based on an MXene/PVP composite nanofiber membrane for health monitoring Ren, Mengna Sun, Zhongsen Zhang, Mengqi Yang, Xiaojun Guo, Dedong Dong, Shuheng Dhakal, Rajendra Yao, Zhao Li, Yuanyue Kim, Nam Young Nanoscale Adv Chemistry Flexible and wearable pressure sensors have attracted extensive attention in domains, such as electronic skin, medical monitoring and human–machine interaction. However, developing a pressure sensor with high sensitivity, mechanical stability and a wide detection range remains a huge challenge. In this work, a flexible capacitive pressure sensor, based on a Ti(3)C(2)T(x) (MXene)/polyvinyl pyrrolidone (PVP) composite nanofiber membrane (CNM), prepared via an efficient electrospinning process, is presented. The experimental results show that even a small mass fraction of MXene can effectively decrease the compression modulus of the PVP nanofiber membrane, thus enhancing the sensing performance. Specifically, the sensor based on (0.1 wt% MXene)/PVP CNM has a high sensitivity (0.5 kPa(−1) at 0–1.5 kPa), a fast response/recovery time (45/45 ms), a wide pressure detection range (0–200 kPa), a low detection limit (∼9 Pa) and an excellent mechanical stability (8000 cycles). Due to its superior performance, the sensor can monitor subtle changes in human physiology and other signals, such as pulse, respiration, human joint motions and airflow. In addition, a 4 × 4 sensor array is fabricated that can accurately map the shape and position of objects with good resolution. The high-performance flexible pressure sensor, as developed in this work, shows good application prospects in advanced human–computer interface systems. RSC 2022-08-15 /pmc/articles/PMC9470067/ /pubmed/36133328 http://dx.doi.org/10.1039/d2na00339b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Ren, Mengna
Sun, Zhongsen
Zhang, Mengqi
Yang, Xiaojun
Guo, Dedong
Dong, Shuheng
Dhakal, Rajendra
Yao, Zhao
Li, Yuanyue
Kim, Nam Young
A high-performance wearable pressure sensor based on an MXene/PVP composite nanofiber membrane for health monitoring
title A high-performance wearable pressure sensor based on an MXene/PVP composite nanofiber membrane for health monitoring
title_full A high-performance wearable pressure sensor based on an MXene/PVP composite nanofiber membrane for health monitoring
title_fullStr A high-performance wearable pressure sensor based on an MXene/PVP composite nanofiber membrane for health monitoring
title_full_unstemmed A high-performance wearable pressure sensor based on an MXene/PVP composite nanofiber membrane for health monitoring
title_short A high-performance wearable pressure sensor based on an MXene/PVP composite nanofiber membrane for health monitoring
title_sort high-performance wearable pressure sensor based on an mxene/pvp composite nanofiber membrane for health monitoring
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9470067/
https://www.ncbi.nlm.nih.gov/pubmed/36133328
http://dx.doi.org/10.1039/d2na00339b
work_keys_str_mv AT renmengna ahighperformancewearablepressuresensorbasedonanmxenepvpcompositenanofibermembraneforhealthmonitoring
AT sunzhongsen ahighperformancewearablepressuresensorbasedonanmxenepvpcompositenanofibermembraneforhealthmonitoring
AT zhangmengqi ahighperformancewearablepressuresensorbasedonanmxenepvpcompositenanofibermembraneforhealthmonitoring
AT yangxiaojun ahighperformancewearablepressuresensorbasedonanmxenepvpcompositenanofibermembraneforhealthmonitoring
AT guodedong ahighperformancewearablepressuresensorbasedonanmxenepvpcompositenanofibermembraneforhealthmonitoring
AT dongshuheng ahighperformancewearablepressuresensorbasedonanmxenepvpcompositenanofibermembraneforhealthmonitoring
AT dhakalrajendra ahighperformancewearablepressuresensorbasedonanmxenepvpcompositenanofibermembraneforhealthmonitoring
AT yaozhao ahighperformancewearablepressuresensorbasedonanmxenepvpcompositenanofibermembraneforhealthmonitoring
AT liyuanyue ahighperformancewearablepressuresensorbasedonanmxenepvpcompositenanofibermembraneforhealthmonitoring
AT kimnamyoung ahighperformancewearablepressuresensorbasedonanmxenepvpcompositenanofibermembraneforhealthmonitoring
AT renmengna highperformancewearablepressuresensorbasedonanmxenepvpcompositenanofibermembraneforhealthmonitoring
AT sunzhongsen highperformancewearablepressuresensorbasedonanmxenepvpcompositenanofibermembraneforhealthmonitoring
AT zhangmengqi highperformancewearablepressuresensorbasedonanmxenepvpcompositenanofibermembraneforhealthmonitoring
AT yangxiaojun highperformancewearablepressuresensorbasedonanmxenepvpcompositenanofibermembraneforhealthmonitoring
AT guodedong highperformancewearablepressuresensorbasedonanmxenepvpcompositenanofibermembraneforhealthmonitoring
AT dongshuheng highperformancewearablepressuresensorbasedonanmxenepvpcompositenanofibermembraneforhealthmonitoring
AT dhakalrajendra highperformancewearablepressuresensorbasedonanmxenepvpcompositenanofibermembraneforhealthmonitoring
AT yaozhao highperformancewearablepressuresensorbasedonanmxenepvpcompositenanofibermembraneforhealthmonitoring
AT liyuanyue highperformancewearablepressuresensorbasedonanmxenepvpcompositenanofibermembraneforhealthmonitoring
AT kimnamyoung highperformancewearablepressuresensorbasedonanmxenepvpcompositenanofibermembraneforhealthmonitoring