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Covalently cross-linked layered double hydroxide nanocomposite hydrogels with ultrahigh water content and excellent mechanical properties

机译:具有超高含水量和优异的机械性能共价交联层状双氢氧化物纳米复合水凝胶

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摘要

Hydrogels with their intriguing three-dimensional (3D) cross-linked networks have found multiple applications. However, conventional chemically cross-linked hydrogels are inevitably facing with severe problems such as mechanical weakness and brittleness. In this context, we present a new class of covalently cross-linked nanocomposite (NC) hydrogels based on tris(hydroxymethyl) amino-methane (Tris)-modified layered double hydroxides (LDHs). Reaction of the resultant Tris-LDHs and acryloyl chloride gives Acryloyl-LDHs which can serve as cross-linkers for construction of 3D hydrogel networks. The resulting covalently cross-linked NC hydrogel can be stretched to more than 18 times of its original size and compressed at 90% deformation without rapture. Moreover, such hydrogel can retain as much as 97% of water, and the compressive modulus can reach to 543.7 kPa at a very low cross-linking density of 0.377 molm-3. The excellent mechanical performances are attributed to the flexible polymer chains obtained in NC hydrogels and the necking phenomenon caused by the Tris-LDHs. This work provides a new method for development of stable and mechanically strong hydrogels with high water contents.
机译:具有其有趣的三维(3D)交联网络的水凝胶已发现多个应用。然而,常规化学交联的水凝胶不可避免地面对严重的问题,例如机械弱和脆性。在这种情况下,我们介绍了一种基于Tris(羟甲基)氨基 - 甲烷(TRIS)制水合层状双氢氧化物(LDH)的新类共价交联的纳米复合材料(NC)水凝胶。所得Tris-LDH和丙烯酰氯的反应得到丙烯酰基-LDHS,其可以作为用于构建3D水凝胶网络的交联剂。所得共价交联的NC水凝胶可以拉伸至其原始尺寸的大于18倍以上,并在没有RAPTOR的情况下以90%的变形压缩。此外,这种水凝胶可以保留高达97%的水,并且压缩模量在0.377摩尔3的十字连接密度的非常低的交联密度下达到543.7kPa。优异的机械性能归因于NC水凝胶中获得的柔性聚合物链和由Tris-LDH引起的颈缩现象。这项工作为具有高水含量的稳定和机械强水凝胶提供了一种新的方法。

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