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通过氢键增强的超强韧聚乙烯醇/聚丙烯酸水凝胶。

Super-strong and tough poly(vinyl alcohol)/poly(acrylic acid) hydrogels reinforced by hydrogen bonding.

作者信息

Liu Tianqi, Jiao Chen, Peng Xin, Chen Ya-Nan, Chen Yuanyuan, He Changcheng, Liu Ruigang, Wang Huiliang

机构信息

Beijing Key Laboratory of Energy Conversion and Storage Materials, College of Chemistry, Beijing Normal University, Beijing 100875, P. R. China.

出版信息

J Mater Chem B. 2018 Dec 28;6(48):8105-8114. doi: 10.1039/c8tb02556h. Epub 2018 Nov 21.

Abstract

Synthetic hydrogels or water-containing polymeric materials are much inferior to biological tissues and solid plastics in many aspects of mechanical properties; it is a great challenge to develop hydrogels with mechanical properties comparable with or even superior to those of biological tissues and plastics. Here, we report a type of super-strong and tough hydrogen-bonded poly(vinyl alcohol)/poly(acrylic acid) (PVA/PAA) hydrogel by immersing as-prepared PVA hydrogels in aqueous PAA solutions and then cold-drawing the hydrogels to different strains. The immersing process introduces PAA chains into the PVA hydrogels, which increases the cross-linking density by hydrogen bonding and hence, much improved mechanical properties and low water contents (35.9-40.2 wt%) are observed. The cold-drawing orients the polymer chains, which enables the formation of more and stronger hydrogen bonds. The mechanical properties of cold-drawn gels are dramatically enhanced, with tensile strength and elastic modulus up to 140 and 100 MPa, respectively; also, super-high toughness (117 MJ m) and fracture energy (101 kJ m) are obtained. Very impressively, the ultra-high tensile strengths of the cold-drawn hydrogels are superior to those of biological tissues and most solid engineered plastics. Characterizations and comparative studies prove that the enhancement of mechanical properties is mainly due to the formation of more hydrogen bonding rather than the loss of water or the change in crystallinity. This study provides a new strategy for preparing super-strong physically cross-linked hydrogels and other polymeric materials. This super-strong and tough hydrogel may find potential applications in biomedical and load-bearing fields.

摘要

合成水凝胶或含水聚合物材料在机械性能的许多方面远不如生物组织和固体塑料;开发具有与生物组织和塑料相当甚至更优机械性能的水凝胶是一项巨大挑战。在此,我们报道了一种超强韧的氢键型聚乙烯醇/聚丙烯酸(PVA/PAA)水凝胶,通过将制备好的PVA水凝胶浸入PAA水溶液中,然后将水凝胶冷拉至不同应变来制备。浸入过程将PAA链引入PVA水凝胶中,通过氢键增加了交联密度,因此观察到机械性能得到显著改善且含水量较低(35.9 - 40.2 wt%)。冷拉使聚合物链取向,从而能够形成更多更强的氢键。冷拉凝胶的机械性能显著增强,拉伸强度和弹性模量分别高达140和100 MPa;此外,还获得了超高韧性(117 MJ m)和断裂能(101 kJ m)。非常令人印象深刻的是,冷拉水凝胶的超高拉伸强度优于生物组织和大多数固体工程塑料。表征和对比研究证明,机械性能的增强主要归因于形成了更多的氢键,而非水分流失或结晶度变化。本研究为制备超强物理交联水凝胶和其他聚合物材料提供了一种新策略。这种超强韧水凝胶可能在生物医学和承重领域找到潜在应用。

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