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Three-dimensional Layered Water-Soluble Cellulose Acetate/Polyacrylamide Composites with Ultrahigh Ductility and Stretchability

机译:具有超高延展性和可拉伸性的三维分层水溶性醋酸纤维素/聚丙烯酰胺复合材料

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摘要

Water-soluble cellulose acetate (WSCA), one of the most important cellulose derivatives, possesses biocompatibility, biodegradability and broad chemical modifying capacities. In this work, highly polymerized WSCA was firstly synthesized and used as cross-linker to fabricate highly ductile, tough and resilient WSCA/polyacrylamide (PAM) composite hydrogels. The results showed that the WSCA/PAM nanocomposite hydrogels exhibited extraordinary toughness and ductility with a tensile strength of 297 kPa and elongation at break of about 4020%. The enhancement of mechanical properties and stretchability were due to the synergistic effect from the hydrogen bonding and physical entanglement between the composite matrixes. Under stretching conditions, hydrogen bonds and the dense entanglement between WSCA chains and PAM could dynamically break and rearrange to dissipate energy. At the same time, the filaments of PAM embedded in layered WSCA matrix became unfolded or fractured to dissipate energy and maintained the conformation of hydrogels. It was envisioned that the introduction of WSCA into polymeric matrix would generate a facile method to fabricate multiple layered hybrid hydrogel network and significantly widen the WSCA applications in the preparation of high performance supramolecular systems.
机译:水溶性醋酸纤维素(WSCA)是最重要的纤维素衍生物之一,具有生物相容性,生物降解性和广泛的化学改性能力。在这项工作中,首先合成了高度聚合的WSCA,并用作交联剂,以制备高度延展,坚韧和有弹性的WSCA /聚丙烯酰胺(PAM)复合水凝胶。结果表明,WSCA / PAM纳米复合水凝胶显示出非凡的韧性和延展性,抗拉强度为297 kPa,断裂伸长率约为4020%。机械性能和可拉伸性的增强归因于复合基质之间氢键和物理缠结的协同作用。在拉伸条件下,氢键和WSCA链与PAM之间的紧密缠结会动态断裂并重新排列以耗散能量。同时,包埋在分层WSCA基质中的PAM细丝会展开或断裂,以耗散能量并保持水凝胶的构象。可以预见,将WSCA引入聚合物基体将产生一种简便的方法来制造多层混合水凝胶网络,并显着拓宽WSCA在制备高性能超分子系统中的应用。

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