Highly Stretchable and Compressible Carbon Nanofiber–Polymer Hydrogel Strain Sensor for Human Motion Detection. Issue 3 (24th February 2020)
- Record Type:
- Journal Article
- Title:
- Highly Stretchable and Compressible Carbon Nanofiber–Polymer Hydrogel Strain Sensor for Human Motion Detection. Issue 3 (24th February 2020)
- Main Title:
- Highly Stretchable and Compressible Carbon Nanofiber–Polymer Hydrogel Strain Sensor for Human Motion Detection
- Authors:
- Cheng, Baowei
Chang, Shulong
Li, Hui
Li, Yunxing
Shen, Weixia
Shang, Yuanyuan
Cao, Anyuan - Abstract:
- Abstract: With the development of technology and the improvement of living standards, wearable electronic devices have attracted more attention. Here, both stretchable and compressible hydrogel strain sensors based on carbon nanofiber powder (CFP) and polyvinyl alcohol (PVA) are prepared by freezing–thawing cycles. The PVA/CFP hydrogel exhibits excellent stretchable (366%) and compressible strains (70%). During 1000 loading–unloading cycles, the PVA/CFP hydrogel has a low plastic deformation (<10%, for both stretching and compressing), small energy loss efficiency (5.62% under stretching and 12.13% under compressing), and stable mechanical strength and excellent sensitivity, at conditions whether it is stretched to 100% or compressed to 50% strains. The stretchable and compressible PVA/CFP hydrogel can not only accurately detect multiple stretching behaviors of human activity, such as bending of joints, swallowing or breathing, but also detect the changes of pressure during walking. Besides, the PVA/CFP hydrogel can operate electronic screens due to its internal ions, with more potential application in soft robotics and electronic skin. Abstract : A polyvinyl alcohol/carbon nanofiber powder hydrogel fabricated by freezing–thawing cycles exhibits excellent stretchable strains (366%), compressible strains (70%), and satisfactory elasticity. Furthermore, it shows stable mechanical properties and excellent sensitivity, whether it is stretched to 100% or compressed to 50%.Abstract: With the development of technology and the improvement of living standards, wearable electronic devices have attracted more attention. Here, both stretchable and compressible hydrogel strain sensors based on carbon nanofiber powder (CFP) and polyvinyl alcohol (PVA) are prepared by freezing–thawing cycles. The PVA/CFP hydrogel exhibits excellent stretchable (366%) and compressible strains (70%). During 1000 loading–unloading cycles, the PVA/CFP hydrogel has a low plastic deformation (<10%, for both stretching and compressing), small energy loss efficiency (5.62% under stretching and 12.13% under compressing), and stable mechanical strength and excellent sensitivity, at conditions whether it is stretched to 100% or compressed to 50% strains. The stretchable and compressible PVA/CFP hydrogel can not only accurately detect multiple stretching behaviors of human activity, such as bending of joints, swallowing or breathing, but also detect the changes of pressure during walking. Besides, the PVA/CFP hydrogel can operate electronic screens due to its internal ions, with more potential application in soft robotics and electronic skin. Abstract : A polyvinyl alcohol/carbon nanofiber powder hydrogel fabricated by freezing–thawing cycles exhibits excellent stretchable strains (366%), compressible strains (70%), and satisfactory elasticity. Furthermore, it shows stable mechanical properties and excellent sensitivity, whether it is stretched to 100% or compressed to 50%. Multiple human motions can be detected by the hydrogel, which shows more potential application in soft robotics and wearable flexible devices. … (more)
- Is Part Of:
- Macromolecular materials and engineering. Volume 305:Issue 3(2020)
- Journal:
- Macromolecular materials and engineering
- Issue:
- Volume 305:Issue 3(2020)
- Issue Display:
- Volume 305, Issue 3 (2020)
- Year:
- 2020
- Volume:
- 305
- Issue:
- 3
- Issue Sort Value:
- 2020-0305-0003-0000
- Page Start:
- n/a
- Page End:
- n/a
- Publication Date:
- 2020-02-24
- Subjects:
- carbon nanofiber composites -- compressible -- human motion detectors -- strain sensors -- wearable electronic devices
Plastics -- Periodicals
Polymers -- Periodicals
Polymerization -- Periodicals
547.705 - Journal URLs:
- http://onlinelibrary.wiley.com/journal/10.1002/(ISSN)1439-2054 ↗
http://onlinelibrary.wiley.com/ ↗ - DOI:
- 10.1002/mame.201900813 ↗
- Languages:
- English
- ISSNs:
- 1438-7492
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 5330.398700
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- 13158.xml