Residential College | false |
Status | 已發表Published |
A semi-interpenetrating network ionic composite hydrogel with low modulus, fast self-recoverability and high conductivity as flexible sensor | |
Ding, Hongyao; Liang, Xiaoxu; Wang, Qiao; Wang, Miaomiao; Li, Zongjin; Sun, Guoxing | |
2020-11-15 | |
Source Publication | Carbohydrate Polymers |
ISSN | 0144-8617 |
Volume | 248Pages:116797 |
Abstract | There is a growing demand for hydrogel-based sensors due to their biomimetic structures and properties, as well as biocompatibility. However, it is still a challenge to fabricate hydrogel sensor with integration of good mechanical properties and high conductivity. Herein, a tough and conductive hydrogel is developed with semi-interpenetrating network formed by incorporating carboxymethyl chitosan and sodium chloride into polyacrylamide network. The hydrogels have high tensile strength, elongation and toughness, but low modulus comparable to human skin. In addition, the hydrogels exhibit fast self-recovery and satisfactory self-healing capabilities. Owing to the existence of sodium chloride, the hydrogel also has high conductivity, good water retention property and anti-freezing ability. When used as a strain sensor, it demonstrates a broad strain window and shows a high sensitivity in monitoring human motions. This work provides a facile method in fabricating multifunctional ionic conductive hydrogel for applications in wearable electronics and soft robotics. |
Keyword | Hydrogen Bond Ionic Conductivity Self-recovery Semi-interpenetrating Network Strain Sensor Tough Hydrogel |
DOI | 10.1016/j.carbpol.2020.116797 |
URL | View the original |
Indexed By | SCIE |
Language | 英語English |
WOS Research Area | Chemistry ; Polymer Science |
WOS Subject | Chemistry, Applied ; Chemistry, Organic ; Polymer Science |
WOS ID | WOS:000571218900007 |
Publisher | ELSEVIER SCI LTD, THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND |
Scopus ID | 2-s2.0-85088648417 |
Fulltext Access | |
Citation statistics | |
Document Type | Journal article |
Collection | INSTITUTE OF APPLIED PHYSICS AND MATERIALS ENGINEERING |
Corresponding Author | Sun, Guoxing |
Affiliation | Joint Key Laboratory of the Ministry of Education,Institute of Applied Physics and Materials Engineering,University of Macau,Macau SAR,Avenida da Universidade, Taipa,China |
First Author Affilication | INSTITUTE OF APPLIED PHYSICS AND MATERIALS ENGINEERING |
Corresponding Author Affilication | INSTITUTE OF APPLIED PHYSICS AND MATERIALS ENGINEERING |
Recommended Citation GB/T 7714 | Ding, Hongyao,Liang, Xiaoxu,Wang, Qiao,et al. A semi-interpenetrating network ionic composite hydrogel with low modulus, fast self-recoverability and high conductivity as flexible sensor[J]. Carbohydrate Polymers, 2020, 248, 116797. |
APA | Ding, Hongyao., Liang, Xiaoxu., Wang, Qiao., Wang, Miaomiao., Li, Zongjin., & Sun, Guoxing (2020). A semi-interpenetrating network ionic composite hydrogel with low modulus, fast self-recoverability and high conductivity as flexible sensor. Carbohydrate Polymers, 248, 116797. |
MLA | Ding, Hongyao,et al."A semi-interpenetrating network ionic composite hydrogel with low modulus, fast self-recoverability and high conductivity as flexible sensor".Carbohydrate Polymers 248(2020):116797. |
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