Hua Jiachuan, Liu Chang, Fei Bin, Liu Zunfeng
Institute of Textiles and Clothing, The Hong Kong Polytechnic University, Hong Kong 999077, China.
Key Laboratory of Functional Polymer Materials, College of Chemistry, Nankai University, Tianjin 300071, China.
Gels. 2022 Feb 8;8(2):101. doi: 10.3390/gels8020101.
Macroscopic hydrogel fibers are highly desirable for smart textiles, but the fabrication of self-healable and super-tough covalent/physical double-network hydrogels is rarely reported. Herein, copolymers containing ketone groups were synthesized and prepared into a dynamic covalent hydrogel via acylhydrazone chemistry. Double-network hydrogels were constructed via the dynamic covalent crosslinking of copolymers and the supramolecular interactions of iota-carrageenan. Tensile tests on double-network and parental hydrogels revealed the successful construction of strong and tough hydrogels. The double-network hydrogel precursor was wet spun to obtain macroscopic fibers with controlled drawing ratios. The resultant fibers reached a high strength of 1.35 MPa or a large toughness of 1.22 MJ/m. Highly efficient self-healing performances were observed in hydrogel fibers and their bulk specimens. Through the simultaneous healing of covalent and supramolecular networks under acidic and heated conditions, fibers achieved rapid and near-complete healing with 96% efficiency. Such self-healable and super-tough hydrogel fibers were applied as shape memory fibers for repetitive actuating in response to water, indicating their potential in intelligent fabrics.
宏观水凝胶纤维对于智能纺织品来说非常理想,但关于可自愈且超坚韧的共价/物理双网络水凝胶的制备却鲜有报道。在此,合成了含酮基的共聚物,并通过腙化学将其制备成动态共价水凝胶。通过共聚物的动态共价交联和ι-卡拉胶的超分子相互作用构建了双网络水凝胶。对双网络水凝胶和亲本水凝胶进行的拉伸测试表明成功制备出了强韧的水凝胶。将双网络水凝胶前驱体进行湿法纺丝,以获得具有可控拉伸比的宏观纤维。所得纤维的强度高达1.35 MPa,韧性高达1.22 MJ/m³。在水凝胶纤维及其块状样品中观察到了高效的自愈性能。通过在酸性和加热条件下共价网络和超分子网络的同时愈合,纤维实现了快速且近乎完全的愈合,愈合效率达96%。这种可自愈且超坚韧的水凝胶纤维被用作形状记忆纤维,用于对水做出响应的重复驱动,这表明它们在智能织物方面具有潜力。