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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Self-healable, super tough graphene oxide-poly(acrylic acid) nanocomposite hydrogels facilitated by dual cross-linking effects through dynamic ionic interactions
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Self-healable, super tough graphene oxide-poly(acrylic acid) nanocomposite hydrogels facilitated by dual cross-linking effects through dynamic ionic interactions

机译:自修复,超韧氧化石墨烯-聚(丙烯酸)纳米复合水凝胶通过动态离子相互作用的双重交联作用促进

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Here we propose a facile, one-pot in situ free radical polymerization strategy to prepare self-healable, super tough graphene oxide (GO)-poly(acrylic acid) (PAA) nanocomposite hydrogels by using Fe3+ ions as a cross-linker. The 3-dimensional network structure of the GO-PAA nanocomposite hydrogels is facilitated by dual cross-linking effects through dynamic ionic interactions: (i) the first cross-linking points are Fe3+ ions creating ionic cross-linking among PAA chains; (ii) the second cross-linking points are GO nanosheets linking PAA chains through Fe3+ coordination. When the GO-PAA nanocomposite hydrogels are under stretching conditions, the ionic interactions among PAA chains can dynamically break and recombine to dissipate energy, while the GO nanosheets coordinated to the PAA chains maintain the configuration of the hydrogels and work as stress transfer centers transferring the stress to the polymer matrix. In this regard, the GO-PAA nanocomposite hydrogels exhibit superior toughness (tensile strength = 777 kPa, work of extension = 11.9 MJ m(-3)) and stretchability (elongation at break = 2980%). Furthermore, after being treated at 45 degrees C for 48 h, the cut-off GO-PAA nanocomposite hydrogels exhibit good self-healing properties (tensile strength = 495 kPa, elongation at break = 2470%). The self-healable, super tough GO-PAA nanocomposite hydrogels lay a basis for developing advanced soft materials holding potential applications in modern biomedical engineering and technology.
机译:在这里,我们提出了一种简便的,一锅式的原位自由基聚合策略,以使用Fe3 +离子作为交联剂来制备可自我修复的超韧氧化石墨烯(GO)-聚(丙烯酸)(PAA)纳米复合水凝胶。 GO-PAA纳米复合水凝胶的3维网络结构通过动态离子相互作用的双重交联作用得以促进:(i)第一个交联点是Fe3 +离子,在PAA链之间产生离子交联; (ii)第二个交联点是通过Fe3 +配位连接PAA链的GO纳米片。当GO-PAA纳米复合水凝胶处于拉伸条件下时,PAA链之间的离子相互作用可动态断裂并复合以耗散能量,而与PAA链配位的GO纳米片则保持了水凝胶的构型并作为应力传递中心传递对聚合物基质的应力。在这方面,GO-PAA纳米复合水凝胶显示出优异的韧性(拉伸强度= 777 kPa,延伸功= 11.9 MJ m(-3))和可拉伸性(断裂伸长率= 2980%)。此外,GO-PAA纳米复合水凝胶在45摄氏度下处理48小时后,表现出良好的自愈性能(拉伸强度= 495 kPa,断裂伸长率= 2470%)。可自我修复,超韧的GO-PAA纳米复合水凝胶为开发先进的软质材料奠定了基础,这些材料在现代生物医学工程和技术中具有潜在的应用前景。

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