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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >In Situ Cross-Linking of Poly(vinyl alcohol)/Graphene Oxide-Polyethylene Glycol Nanocomposite Hydrogels as Artificial Cartilage Replacement: Intercalation Structure, Unconfined Compressive Behavior, and Biotribological Behaviors
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In Situ Cross-Linking of Poly(vinyl alcohol)/Graphene Oxide-Polyethylene Glycol Nanocomposite Hydrogels as Artificial Cartilage Replacement: Intercalation Structure, Unconfined Compressive Behavior, and Biotribological Behaviors

机译:原位交联聚(乙烯醇)/石墨烯氧化物 - 聚乙二醇纳米复合水凝胶作为人造软骨置换:插层结构,无束缚的压缩行为和生物学行为

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Poly(vinyl alcohol) (PVA)/graphene oxide (GO) nanocomposite hydrogel as artificial cartilage replacement was prepared via freezing/thawing method by introducing polyethylene glycol (PEG). Efficient grafting of PVA molecules onto GO surface was realized by formation of hydrogen bonding, resulting in exfoliation and uniform distribution of GO in PVA matrix. By introduction of appropriate content of GO, the increased crystalline regions of PVA and the formation of GO centered second network structure led to the increase of the storage modulus and effective cross-linking density. And therefore the mechanical strength and toughness of the composite hydrogel were improved simultaneously: the tensile strength, elongation at break, and compressive modulus showed approximately 200%, 40%, and 100% increase of the neat PVA hydrogel. Besides, for the sample with 1.5 wt % GO content, the maximum force retention and dynamic stiffness were improved remarkably in the process of sinusoidal cyclic compression, and the compressive relaxation stress also increased significantly, indicating the enhancement of the compressive recoverable and antifatigue ability, and resistance to compressive relaxation by formation of high load-bearing, dense, and reinforcing double network structure. Moreover, more than 50% decrease in coefficient of friction was obtained for the composite hydrogel, and the worn surface presented relative smooth and flat features with sharp decreasing furrow depth, confirming the lubrication effect of GO-PEG. This study shows promising potentials in developing new materials for cartilage replacement with simultaneous combination of high mechanical property and excellent lubrication.
机译:通过引入聚乙二醇(PEG),通过冷冻/解冻方法制备聚(乙烯醇)/石墨烯氧化物(GO)纳米复合水凝胶作为人造软骨置换。通过形成氢键来实现PVA分子在去表面上的有效接枝,导致PVA基质中的去角质和均匀分布。通过引入适当的GO含量,PVA的增加的晶体区域和GO中心的第二网络结构的形成导致了储存模量的增加和有效的交联密度。因此,同时改善了复合水凝胶的机械强度和韧性:抗拉强度,断裂伸长率,并且压缩模量显示约200%,40%和100%增加的整洁PVA水凝胶。此外,对于具有1.5wt%Go含量的样品,在正弦循环压缩过程中,最大力保留和动态刚度显着提高,并且压缩松弛应力也显着增加,表明压缩可恢复和抗抗抗原能力的增强,通过形成高承载,致密,加强双网络结构来抗压松弛抗压。此外,对于复合水凝胶,获得了超过50%的摩擦系数减少,并且磨损的表面呈现相对平滑和平坦的特征,具有尖锐的沟槽深度,确认了Go-Peg的润滑效果。本研究表明,在同时组合高机械性能和优异的润滑,开发软骨置换新材料的潜力可能。

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