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Tough and self-healable nanocomposite hydrogels from poly(acrylic acid) and polyacrylamide grafted cellulose nanocrystal crosslinked by coordination bonds and hydrogen bonds

机译:来自聚(丙烯酸)和聚丙烯酰胺接枝纤维素纳米晶体的坚韧和自我恢复的纳米复合水烯烃通过配位键和氢键交联

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摘要

Developing self-healable hydrogels with excellent mechanical performance is important for their potential applications. In this paper, tough and self-healable dual physically crosslinked nanocomposite hydrogels reinforced with polyacrylamide grafted cellulose nanocrystal (CNC-g-PAM) were fabricated by in situ free radical polymerization of acrylic acid (AA) monomers in the presence of FeCl3 (0.75% of AA mole) and CNC-g-PAM (1-3% of AA mass). The primary network of PAA/CNC-g-PAM nanocomposite hydrogels was constructed via coordination bonds between carboxylic groups from PAA and Fe3+ ions, while CNC-g-PAM served as both reinforcing nanofillers and physical crosslinkers via hydrogen bonds between PAA matrix and PAM chains on the surface of CNC. The nanocomposite hydrogels exhibited simultaneously improved elastic modulus, tensile strength and elongation at break with the increase of CNC-g-PAM loading. The dynamic nature of both coordination bonds and hydrogen bonds endowed the nanocomposite hydrogels with excellent energy dissipation, self-recovery ability and autonomous self-healing capacity.
机译:开发具有优异机械性能的自我恢复水凝胶对于其潜在的应用很重要。本文通过在FECL3存在下,通过原位自由基聚合在FECL3存在下,通过原位自由基聚合来制造与聚丙烯酰胺接枝纤维素纳米晶(CNC-G-PAM)增强的坚韧和自愈的双物理交联纳米复合水凝胶(0.75% AA摩尔)和CNC-G-PAM(1-3%的AA质量)。 PAA / CNC-G-PAM纳米复合水凝胶的主要网络是通过来自PAA和Fe3 +离子的羧基之间的配位键构成的,而CNC-G-PAM通过Paa基质和PAM链之间的氢键作为增强纳米填料和物理交联剂。在CNC的表面上。纳米复合物水凝胶同时出现了CNC-G-PAM负载的增加改善了弹性模量,拉伸强度和断裂处的伸长率。两个配位键和氢键的动态性质赋予纳米复合水凝胶,具有优异的能量耗散,自恢复能力和自主愈合能力。

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