Biocompatible and breathable healthcare electronics with sensing performances and photothermal antibacterial effect for motion-detecting

Abstract With the booming development of smart wearable devices, flexible multifunctional composites with high sensitivity and well health therapy have evoked great interest for next-generation healthcare electronics. However, the weak biocompatibility, low breathability, and narrow sensing range gr...

Full description

Bibliographic Details
Main Authors: Xinyi Wang, Yan Tao, Shaoshan Pan, Xue Fang, Congcong Lou, Yunqi Xu, Jianpeng Wu, Min Sang, Liang Lu, Xinglong Gong, Tianzhi Luo, Shouhu Xuan
Format: Article
Language:English
Published: Nature Portfolio 2022-11-01
Series:npj Flexible Electronics
Online Access:https://doi.org/10.1038/s41528-022-00228-x
_version_ 1811186859268636672
author Xinyi Wang
Yan Tao
Shaoshan Pan
Xue Fang
Congcong Lou
Yunqi Xu
Jianpeng Wu
Min Sang
Liang Lu
Xinglong Gong
Tianzhi Luo
Shouhu Xuan
author_facet Xinyi Wang
Yan Tao
Shaoshan Pan
Xue Fang
Congcong Lou
Yunqi Xu
Jianpeng Wu
Min Sang
Liang Lu
Xinglong Gong
Tianzhi Luo
Shouhu Xuan
author_sort Xinyi Wang
collection DOAJ
description Abstract With the booming development of smart wearable devices, flexible multifunctional composites with high sensitivity and well health therapy have evoked great interest for next-generation healthcare electronics. However, the weak biocompatibility, low breathability, and narrow sensing range greatly hinder the development of healthcare sensors. Herein, a porous, flexible and conductive MXene/Polydimethylsiloxane/Polydopamine/Polyurethane Sponge (MXene/PDMS/PDA/PU) nanocomposite is developed as a promising motion-detecting device with good flexibility, breathability, sensing performance, photothermal therapy and antibacterial activity. Benefiting from the porous structure and biocompatible surface, this multifunctional sensor is further fabricated into a diagnostic and therapeutic system for monitoring human body motion and performing hot therapy/antibacterial treatment in the application of sports injury site. Moreover, both the wireless smart insole and cushion are constructed to gait monitoring and sit position detecting. This multifunctional hybrid sponge not only demonstrates great potential for motion monitoring sensors but also exhibits wide potential in wearable medical assistive and therapeutic systems.
first_indexed 2024-04-11T13:53:25Z
format Article
id doaj.art-0d41186dbcd94b7ebebd8ce2f9f41392
institution Directory Open Access Journal
issn 2397-4621
language English
last_indexed 2024-04-11T13:53:25Z
publishDate 2022-11-01
publisher Nature Portfolio
record_format Article
series npj Flexible Electronics
spelling doaj.art-0d41186dbcd94b7ebebd8ce2f9f413922022-12-22T04:20:27ZengNature Portfolionpj Flexible Electronics2397-46212022-11-016111510.1038/s41528-022-00228-xBiocompatible and breathable healthcare electronics with sensing performances and photothermal antibacterial effect for motion-detectingXinyi Wang0Yan Tao1Shaoshan Pan2Xue Fang3Congcong Lou4Yunqi Xu5Jianpeng Wu6Min Sang7Liang Lu8Xinglong Gong9Tianzhi Luo10Shouhu Xuan11CAS Key Laboratory of Mechanical Behavior and Design of Materials, Department of Modern Mechanics, University of Science and Technology of ChinaOutpatient Department, The First Affiliated Hospital of University of Science and Technology of ChinaCAS Key Laboratory of Mechanical Behavior and Design of Materials, Department of Modern Mechanics, University of Science and Technology of ChinaCAS Key Laboratory of Mechanical Behavior and Design of Materials, Department of Modern Mechanics, University of Science and Technology of ChinaCAS Key Laboratory of Mechanical Behavior and Design of Materials, Department of Modern Mechanics, University of Science and Technology of ChinaCAS Key Laboratory of Mechanical Behavior and Design of Materials, Department of Modern Mechanics, University of Science and Technology of ChinaCAS Key Laboratory of Mechanical Behavior and Design of Materials, Department of Modern Mechanics, University of Science and Technology of ChinaCAS Key Laboratory of Mechanical Behavior and Design of Materials, Department of Modern Mechanics, University of Science and Technology of ChinaThe First Affiliated Hospital of USTC, Division of Life Sciences and Medicine, University of Science and Technology of ChinaCAS Key Laboratory of Mechanical Behavior and Design of Materials, Department of Modern Mechanics, University of Science and Technology of ChinaCAS Key Laboratory of Mechanical Behavior and Design of Materials, Department of Modern Mechanics, University of Science and Technology of ChinaCAS Key Laboratory of Mechanical Behavior and Design of Materials, Department of Modern Mechanics, University of Science and Technology of ChinaAbstract With the booming development of smart wearable devices, flexible multifunctional composites with high sensitivity and well health therapy have evoked great interest for next-generation healthcare electronics. However, the weak biocompatibility, low breathability, and narrow sensing range greatly hinder the development of healthcare sensors. Herein, a porous, flexible and conductive MXene/Polydimethylsiloxane/Polydopamine/Polyurethane Sponge (MXene/PDMS/PDA/PU) nanocomposite is developed as a promising motion-detecting device with good flexibility, breathability, sensing performance, photothermal therapy and antibacterial activity. Benefiting from the porous structure and biocompatible surface, this multifunctional sensor is further fabricated into a diagnostic and therapeutic system for monitoring human body motion and performing hot therapy/antibacterial treatment in the application of sports injury site. Moreover, both the wireless smart insole and cushion are constructed to gait monitoring and sit position detecting. This multifunctional hybrid sponge not only demonstrates great potential for motion monitoring sensors but also exhibits wide potential in wearable medical assistive and therapeutic systems.https://doi.org/10.1038/s41528-022-00228-x
spellingShingle Xinyi Wang
Yan Tao
Shaoshan Pan
Xue Fang
Congcong Lou
Yunqi Xu
Jianpeng Wu
Min Sang
Liang Lu
Xinglong Gong
Tianzhi Luo
Shouhu Xuan
Biocompatible and breathable healthcare electronics with sensing performances and photothermal antibacterial effect for motion-detecting
npj Flexible Electronics
title Biocompatible and breathable healthcare electronics with sensing performances and photothermal antibacterial effect for motion-detecting
title_full Biocompatible and breathable healthcare electronics with sensing performances and photothermal antibacterial effect for motion-detecting
title_fullStr Biocompatible and breathable healthcare electronics with sensing performances and photothermal antibacterial effect for motion-detecting
title_full_unstemmed Biocompatible and breathable healthcare electronics with sensing performances and photothermal antibacterial effect for motion-detecting
title_short Biocompatible and breathable healthcare electronics with sensing performances and photothermal antibacterial effect for motion-detecting
title_sort biocompatible and breathable healthcare electronics with sensing performances and photothermal antibacterial effect for motion detecting
url https://doi.org/10.1038/s41528-022-00228-x
work_keys_str_mv AT xinyiwang biocompatibleandbreathablehealthcareelectronicswithsensingperformancesandphotothermalantibacterialeffectformotiondetecting
AT yantao biocompatibleandbreathablehealthcareelectronicswithsensingperformancesandphotothermalantibacterialeffectformotiondetecting
AT shaoshanpan biocompatibleandbreathablehealthcareelectronicswithsensingperformancesandphotothermalantibacterialeffectformotiondetecting
AT xuefang biocompatibleandbreathablehealthcareelectronicswithsensingperformancesandphotothermalantibacterialeffectformotiondetecting
AT congconglou biocompatibleandbreathablehealthcareelectronicswithsensingperformancesandphotothermalantibacterialeffectformotiondetecting
AT yunqixu biocompatibleandbreathablehealthcareelectronicswithsensingperformancesandphotothermalantibacterialeffectformotiondetecting
AT jianpengwu biocompatibleandbreathablehealthcareelectronicswithsensingperformancesandphotothermalantibacterialeffectformotiondetecting
AT minsang biocompatibleandbreathablehealthcareelectronicswithsensingperformancesandphotothermalantibacterialeffectformotiondetecting
AT lianglu biocompatibleandbreathablehealthcareelectronicswithsensingperformancesandphotothermalantibacterialeffectformotiondetecting
AT xinglonggong biocompatibleandbreathablehealthcareelectronicswithsensingperformancesandphotothermalantibacterialeffectformotiondetecting
AT tianzhiluo biocompatibleandbreathablehealthcareelectronicswithsensingperformancesandphotothermalantibacterialeffectformotiondetecting
AT shouhuxuan biocompatibleandbreathablehealthcareelectronicswithsensingperformancesandphotothermalantibacterialeffectformotiondetecting