自愈水凝胶
聚丙烯酰胺
材料科学
化学工程
壳聚糖
复合材料
阳离子聚合
胶粘剂
高分子化学
图层(电子)
工程类
作者
Song Liu,Li Wan,Feifan Hu,Zhiwei Wen,Ming Cao,Fanrong Ai
标识
DOI:10.1021/acsapm.3c02742
摘要
Conductive hydrogels, a type of intrinsically flexible and conductive materials, are frequently employed in soft electronics. However, because water-based hydrogels can easily freeze and dry, their long-term stability is considerably limited. Herein, a glycerol (Gly)–water binary antifreezing and antidrying hydrogel was prepared by using glycine with water as a solvent, followed by the introduction of cationic polysaccharide chitosan quaternary ammonium salts into the covalently cross-linked polyacrylamide network and addition of NaCl ions to adjust the ionic conductivity of the hydrogel. In a broad temperature range, the produced hydrogel was used for tensile and sensitive strain sensing. Because strong hydrogen bonds between Gly and water molecules are easily established, the resultant organohydrogels have good freezing and drying endurance, retaining long-term deformation even at negative temperatures. Moreover, the hydrogel exhibits good adhesion and tensile properties because of the addition of chitosan quaternary ammonium salts. At the same time, strain sensors fabricated using the hydrogel exhibit a wide operating strain range (≈1000%) and good sensitivity, stability, and repeatability, making them promising candidates for building gel-based strain sensor platforms.
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