A self-healing and conductive ionic hydrogel based on polysaccharides for flexible sensors
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A self-healing and conductive ionic hydrogel based on polysaccharides for flexible sensors
A self-healing and conductive ionic hydrogel based on polysaccharides for flexible sensors
中国化学工程学报(英文版)2023年53卷第1期 页码:73-82
Affiliations:
1. Beijing Engineering Research Center for the Synthesis and Applications of Waterborne Polymers,Beijing,China,100029
2. Key Laboratory of Carbon Fibers and Functional Polymers, Ministry of Education,Beijing,China,100029
3. College of Materials Science and Engineering, Beijing University of Chemical Technology,Beijing,China,100029
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中图分类号:
纸质出版:2023
Accepted:
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Yufei Wang, Zihao Chen, Rui Chen, 等. A self-healing and conductive ionic hydrogel based on polysaccharides for flexible sensors[J]. 中国化学工程学报(英文版), 2023,53(1):73-82.
Yufei Wang, Zihao Chen, Rui Chen, Jie Wei. A self-healing and conductive ionic hydrogel based on polysaccharides for flexible sensors[J]. Chinese Journal of Chemical Engineering, 2023, 53(1): 73-82.
Yufei Wang, Zihao Chen, Rui Chen, 等. A self-healing and conductive ionic hydrogel based on polysaccharides for flexible sensors[J]. 中国化学工程学报(英文版), 2023,53(1):73-82.DOI:
Yufei Wang, Zihao Chen, Rui Chen, Jie Wei. A self-healing and conductive ionic hydrogel based on polysaccharides for flexible sensors[J]. Chinese Journal of Chemical Engineering, 2023, 53(1): 73-82.DOI:
A self-healing and conductive ionic hydrogel based on polysaccharides for flexible sensors
we proposed a self-healing conductive hydrogel based on polysaccharides and Li
+
to serve as flexible sensors. At first
the oxidized sodium alginate (OSA) was obtained through the oxidation reaction of sodium alginate (SA). Then OSA
carboxymethyl chitosan (CMC)
and agarose (AGO) were dissolved in LiCl solution
respectively. Finally
the hydrogel was obtained through heating
mixing
and cooling processes. Because of the Schiff base structure and hydrogen bonding
the hydrogel demonstrates good mechanical and self-healing properties. The presence of Li
+
provides good conductivity for the hydrogel. In addition
we demonstrated the application of the hydrogel as the flexible sensors. It can perceive the process of pressing Morse code with the index finger as a pressure sensor and monitor sliding movement of the thumb as the strain sensor to browse the web with the mobile phone. Thus
the self-healing conductive hydrogel may have potential applications in flexible wearable sensors.
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相关作者
Jinli Qiao
Lu Cai
Tianchi Zhou
Yongnan Zhou
Xi Luo
Haoran Cao
Naibing Li
Zhengyuan Zhou
相关机构
College of Textiles and Clothing, Yancheng Institute of Technology
State Key Laboratory of Advanced Fiber Materials, College of Environmental Science and Engineering, Donghua University
School of Science, Hainan University
College of Environment, Engineering Research Center of Low-Carbon Treatment and Green Development of Polluted Water in Northeast China, Ministry of Education, Northeast Normal University
School of Energy and Power Engineering, Jiangsu University