Construction and characterization of highly stretchable ionic conductive hydrogels for flexible sensors with good anti-freezing performance. (15th March 2023)
- Record Type:
- Journal Article
- Title:
- Construction and characterization of highly stretchable ionic conductive hydrogels for flexible sensors with good anti-freezing performance. (15th March 2023)
- Main Title:
- Construction and characterization of highly stretchable ionic conductive hydrogels for flexible sensors with good anti-freezing performance
- Authors:
- Zhang, Chenyan
Wang, Jikui
Li, Shuo
Zou, Xinquan
Yin, Huixian
Huang, Yicheng
Dong, Feilong
Li, Peiyuan
Song, Yaoting - Abstract:
- Graphical abstract: Highlights: Anti-freezing conductive semi-IPN hydrogel was constructed by PAM, SA and LiCl. Sodium alginate enhanced mechanical toughness (elongation at break ∼2100%). LiCl contributed to sensitivity (GF = 17.45 in high strain) and anti-freezing property. PAM/SA/3M LiCl hydrogel could maintain stretchable and conductive at −30 °C. Abstract: As an ideal material for flexible sensors, electrically conductive hydrogels (ECHs) has been faced with water loss and easy freezing, which affects the conductive and tensile properties. Polyacrylamide/sodium alginate/LiCl (PAM/SA/LiCl) hydrogel was constructed to enhance the anti-freezing property without deficiencies of tensile and electrical performance. A semi-interpenetrating network (semi-IPN) was formed by PAM and SA through hydrogen bonding, which performed excellent mechanical property (fracture strain 2100%, fracture stress 110 KPa). LiCl contributed to the high ionic conductivity (up to 21.7 S/m) and sensitivity (Gauge Factor (GF) = 17.45). Double hydrogen bonding of SA and PAM, hydration of LiCl and ion interaction between SA and lithium ion improved the anti-freezing performance and mechanical property of the hydrogel together. The proportion of non-freezing water in system was proved to be significantly increased. The comprehensive properties of the hydrogels were evaluated and PAM/SA/3M LiCl hydrogel kept conductive without obvious loss of stretchability at −30 °C. The PAM/SA/LiCl hydrogel integratesGraphical abstract: Highlights: Anti-freezing conductive semi-IPN hydrogel was constructed by PAM, SA and LiCl. Sodium alginate enhanced mechanical toughness (elongation at break ∼2100%). LiCl contributed to sensitivity (GF = 17.45 in high strain) and anti-freezing property. PAM/SA/3M LiCl hydrogel could maintain stretchable and conductive at −30 °C. Abstract: As an ideal material for flexible sensors, electrically conductive hydrogels (ECHs) has been faced with water loss and easy freezing, which affects the conductive and tensile properties. Polyacrylamide/sodium alginate/LiCl (PAM/SA/LiCl) hydrogel was constructed to enhance the anti-freezing property without deficiencies of tensile and electrical performance. A semi-interpenetrating network (semi-IPN) was formed by PAM and SA through hydrogen bonding, which performed excellent mechanical property (fracture strain 2100%, fracture stress 110 KPa). LiCl contributed to the high ionic conductivity (up to 21.7 S/m) and sensitivity (Gauge Factor (GF) = 17.45). Double hydrogen bonding of SA and PAM, hydration of LiCl and ion interaction between SA and lithium ion improved the anti-freezing performance and mechanical property of the hydrogel together. The proportion of non-freezing water in system was proved to be significantly increased. The comprehensive properties of the hydrogels were evaluated and PAM/SA/3M LiCl hydrogel kept conductive without obvious loss of stretchability at −30 °C. The PAM/SA/LiCl hydrogel integrates remarkable toughness, conductivity, sensitivity and anti-freezing property, which is a suitable choice in smart wearable devices, soft robots and medical monitoring. … (more)
- Is Part Of:
- European polymer journal. Volume 186(2023)
- Journal:
- European polymer journal
- Issue:
- Volume 186(2023)
- Issue Display:
- Volume 186, Issue 2023 (2023)
- Year:
- 2023
- Volume:
- 186
- Issue:
- 2023
- Issue Sort Value:
- 2023-0186-2023-0000
- Page Start:
- Page End:
- Publication Date:
- 2023-03-15
- Subjects:
- Sensor -- Anti-freezing -- Conductive hydrogel
Polymers -- Periodicals
Polymerization -- Periodicals
Polymères -- Périodiques
Polymérisation -- Périodiques
Polymerization
Polymers
Periodicals
Electronic journals
547.705 - Journal URLs:
- http://www.sciencedirect.com/science/journal/00143057 ↗
http://www.elsevier.com/journals ↗ - DOI:
- 10.1016/j.eurpolymj.2023.111827 ↗
- Languages:
- English
- ISSNs:
- 0014-3057
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 3829.791000
British Library DSC - BLDSS-3PM
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- 25998.xml