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Triple network hydrogels (TN gels) prepared by a one-pot, two-step method with high mechanical properties

机译:通过一锅两步法制备的具有高机械性能的三重网络水凝胶(TN凝胶)

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In this work, poly(vinyl alcohol) (PVA) was incorporated into the networks of polyacrylamide/polyacrylic acid (PAM/PAA) to prepare novel PAM/PAA/PVA Triple-network (TN) hydrogels by an in situ polymerization and repeated freezing–thawing (F–T) process. The TN hydrogels have not only high mechanical strength, but also a moderate swelling ability by varying the weight ratio of calcium chloride (CaCl _(2) ) and PVA and free shaping. The compressive stress of the as-prepared hydrogels could reach 11 MPa, and the highest stretching stress could reach 0.8 MPa. Upon mechanical loading, the coordination network between PAA and CaCl _(2) served as sacrificial bonds to efficiently dissipate energy. However, they can reform when the mechanical load is released, resulting from the fast coordination between PAA and Ca ~(2+) . Therefore, TN hydrogels have potential application in biomaterials.
机译:在这项工作中,将聚乙烯醇(PVA)掺入聚丙烯酰胺/丙烯酸(PAM / PAA)网络中,通过原位聚合和反复冷冻制备新型PAM / PAA / PVA三联网络(TN)水凝胶解冻(FT)过程。 TN水凝胶不仅具有较高的机械强度,而且还具有通过改变氯化钙(CaCl _(2))和PVA的重量比以及自由成型的适度溶胀能力。所制备的水凝胶的压缩应力可达11 MPa,最高拉伸应力可达0.8 MPa。在机械载荷下,PAA和CaCl_(2)之间的配位网络充当牺牲键,可以有效地耗散能量。但是,由于PAA和Ca〜(2+)之间的快速配合,它们可以在释放机械负载时进行重新成型。因此,TN水凝胶在生物材料中具有潜在的应用。

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