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Site‐Specific Oxidation‐Induced Stiffening and Shape Morphing of Soft Tough Hydrogels

机译:地理位置特殊的氧化诱导加劲和形状变形软艰难的水凝胶

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摘要

Abstract Living biological tissues are made of structures with properly defined mechanical properties (toughness and stiffness) toward specific biological functions. Herein, a chemical manipulation strategy is developed to locally vary the oxidation state of Fe ions from divalent to trivalent in the tough hydrogels. The resultant trivalent ionically cross‐linked networks become less flexible and lead to a significant enhancement of the stiffness of the tough hydrogels. The mechanical strengthening of Fe 2+ /Ca 2+ ‐alginate/polyacrylamide tough hydrogels is demonstrated by the oxidation with ammonium persulfate (APS). Moreover, by applying surface patterning, the mechanical properties of the tough hydrogels are spatially stiffened and thus can serve as anisotropic elements to guide the shape morphing of tough hydrogels into complex 3D structures. This method opens up a simple strategy not only to dynamically vary the mechanics of tough hydrogels, both in bulk and locally from prefabricated soft tough hydrogels, but also toward their shape morphing behaviors on demand.
机译:生活生物组织的结构正确定义的机械性能(韧性和刚度)对特定的生物功能。本地策略是发展变化的从二价铁离子的氧化态三价的艰难的水凝胶。三价具有离子交叉作业联系网络不灵活,导致重大的增强刚度的艰难水凝胶。海藻酸/聚丙烯酰胺艰难的水凝胶证明了铵的氧化过硫酸盐(APS)。模式的力学性能艰难的空间变得僵硬,因此水凝胶可以作为各向异性元素指导形状变形的水凝胶为复杂3 d结构。战略不仅动态变化艰难的水凝胶,力学和散装本地从预制软艰难的水凝胶,也对他们的形状变形行为需求。

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