自愈水凝胶
材料科学
标度系数
纳米纤维素
聚乙烯醇
单宁酸
碳纳米管
乙烯醇
复合材料
韧性
化学工程
极限抗拉强度
聚合物
纤维素
高分子化学
化学
有机化学
制作
替代医学
病理
工程类
医学
作者
Heqian Li,Yutong Yang,Miao Li,Yachong Zhu,Congcong Zhang,Rui Zhang,Yongming Song
标识
DOI:10.1016/j.ijbiomac.2022.07.180
摘要
The operating temperature of hydrogels, especially at low temperatures, is crucial due to their wide applicability in soft robots, sensors, and electronic skin. Hydrogels are often used at room temperature, but their performance may deteriorate at low temperatures. Therefore, it is crucial to develop hydrogels that can be used at low temperatures to expand their range of use. Herein, we have proposed a simple one-pot method to prepare a frost-resistant (−70 °C) and conductive hydrogel consisting of a glycerol (Gly)-water binary solvent. We have added tannic acid (TA)-coated carboxymethylated cellulose nanofibrils (CMCNFs) to poly (vinyl alcohol) (PVA) as a functional filler to improve the hydrogel's mechanical properties. The introduction of sulfonated carbon nanotubes (SCNT) has provided the hydrogel with high conductivity (0.1 S/m), strain sensitivity (gauge factor of 3.76), and cyclic stability (1600 cycles). Due to the strong hydrogen bonding and physical entanglement effects between the components, the hydrogel exhibied excellent tensile properties (297 %), high toughness (0.44 MJ/m3), and a high Young's modulus (1.25 MPa). These characteristics ensure that the hydrogel is well suited for low-temperature environments, health monitoring, and wearable devices.
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