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High-strength semi-crystalline hydrogels with self-healing and shape memory functions

机译:具有自我修复和形状记忆功能的高强度半结晶水凝胶

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摘要

We present a non-covalent approach and bulk photopolymerization method of hydrophilic and hydrophobic monomers to generate high-strength self-healing hydrogels with shape memory effect. The hydrogels consist of linear poly(N,N-dimethylacrylamide) (PDMA) or polyacrylic acid (PAAc) chains containing (meth)acrylate units with long alkyl side chains. The existence of crystalline domains and hydrophobic associations formed by side alkyl chains produces hybrid-crosslinked PDMA and PAAc hydrogels with particularly high fracture energy of 20 +/- 1 kJ m(-2) and Young's modulus up to 308 +/- 16 MPa. The mechanical properties of the hydrogels could be tailored by varying the degree of crystallinity. By choosing suitable comonomer pairs and compositions, one may vary the degree of crystallinity between 3 and 33%, which leads to two orders of magnitude change in the modulus, elongation at break, and toughness. The hydrogels undergo up to 1000 fold change in their elastic moduli by changing the temperature between below and above the melting temperature of the crystalline regions. They also exhibit self-healing and shape memory functions triggered by heating above the melting temperature. Healed hydrogels sustain up to 138 +/- 10 MPa compressive stresses, which are around 87% of the compressive stress of the virgin gel samples. (C) 2016 Elsevier Ltd. All rights reserved.
机译:我们提出了一种亲水性和疏水性单体的非共价方法和本体光聚合方法,以产生具有形状记忆效应的高强度自修复水凝胶。水凝胶由线性聚(N,N-二甲基丙烯酰胺)(PDMA)或含有带有长烷基侧链的(甲基)丙烯酸酯单元的聚丙烯酸(PAAc)链组成。烷基侧链形成的结晶域和疏水缔合的存在产生了杂化交联的PDMA和PAAc水凝胶,其断裂能特别高,为20 +/- 1 kJ m(-2),杨氏模量高达308 +/- 16 MPa。可以通过改变结晶度来调整水凝胶的机械性能。通过选择合适的共聚单体对和组成,可以使结晶度在3%至33%之间变化,这导致模量,断裂伸长率和韧性两个数量级的变化。通过在低于和高于结晶区域的熔融温度之间改变温度,水凝胶的弹性模量经历高达1000倍的变化。它们还具有通过加热到熔化温度以上而触发的自我修复和形状记忆功能。修复后的水凝胶可承受高达138 +/- 10 MPa的压缩应力,约为原始凝胶样品的压缩应力的87%。 (C)2016 Elsevier Ltd.保留所有权利。

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