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Shape retaining self-healing metal-coordinated hydrogels

机译:形状保持自我修复metal-coordinated水凝胶

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摘要

Metal-coordinated hydrogels are physical hydrogels entirely crosslinked by complexes between ligand decorated polymers and metal ions. The mechanical properties of these hydrogels strongly depend on the density and dynamics of metal-coordinated interactions. Most commonly, telechelic metal-coordinated hydrogels contain catechol or histidine ligands, although hydrogels containing a stronger complexation agent, nitrocatechol, have been reported. Here, we introduce a pyrogallol end-functionalized polymer that can be crosslinked with di- and trivalent ions, in contrast to previously reported metal-coordinated hydrogels. We can tune the mechanical properties of the hydrogels with the types of ions used and the density of crosslinking sites. Ions form nm-sized precipitates that bind to pyrogallols and impart distinct properties to the hydrogels: strong ion-pyrogallol interactions that form in the presence of Al3+, V3+, Mn2+, Fe3+, Co-2(+), Ni2+ and Cu2+ result in long relaxation times. The resulting hydrogels display solid-like yet reversible mechanical properties, such that they can be processed into macroscopic 3D structures that retain their shapes. Weak ion-pyrogallol interactions that form in the presence of Ca2+ or Zn2+ result in short relaxation times. The resulting hydrogels display a fast self-healing behavior, suited for underwater glues, for example. The flexibility of tuning the mechanical properties of hydrogels simply by selecting the adequate ion-pyrogallol pair broadens the mechanical properties of metal-coordinated hydrogels to suit a wide range of applications that require them to retain their shape for a given time to act as dampers.
机译:Metal-coordinated水凝胶的物理水凝胶完全交联之间的配合物配体装饰的聚合物和金属离子。这些水凝胶的性质强烈依赖metal-coordinated的密度和动态交互。metal-coordinated水凝胶含有儿茶酚或组氨酸配体,尽管水凝胶含有更强的络合剂、nitrocatechol已报告。焦棓酸end-functionalized聚合物,可以交联与di -和三价离子与之前报道metal-coordinated水凝胶。水凝胶的类型和使用的离子交联密度的网站。nm-sized绑定到焦棓酸沉淀水凝胶和传授不同的属性:强ion-pyrogallol互动中形成之先声,V3 Al3 +、Mn2 +、Fe3 +、二氧化碳(+)Ni2 +和Cu2 +导致长时间放松。得到的水凝胶显示固体状可逆的机械性能,这样的他们可以加工成宏观3 d结构保留他们的形状。相互作用中形成Ca2 +的存在Zn2 +导致短暂放松时间。得到的水凝胶显示快速自愈行为、适合水下胶水的例子。水凝胶的性质仅仅通过选择足够的ion-pyrogallol对扩大力学性能metal-coordinated水凝胶,以适应范围广泛的应用程序要求他们保持形状给定的时间作为阻尼器。

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