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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Fabrication and mechanical behaviors of novel supramolecular/polymer hybrid double network hydrogels
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Fabrication and mechanical behaviors of novel supramolecular/polymer hybrid double network hydrogels

机译:新型超分子/聚合物杂交双网络水凝胶的制造和机械行为

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摘要

Double network hydrogels (DN gels) are one of most extensively investigated high strength hydrogels. However, most of DN gels are concern to macromolecules, low-molecular-weight gelators (LMWG)-based supramolecular hydrogels are rarely reported to fabricate recoverable DN gels. Owing to the low mechanical properties, LMWG-based supramolecular hydrogels are hardly fabricated as conducive materials for human motion monitoring. Herein, we report a general strategy to fabricate strong, tough and conducive cholate-based supramolecular gels with double network (DN) structure (i.e. La-cholate/PAAm DN gels), consisting of La-cholate supramolecular gel as first network and covalent polyacrylamide gel (PAAm gel) as second network, in which La-cholate supramolecular gel was self-assembled by La(3+ )ions and sodium cholate under sonication via the synergistic effect of hydrogen bonds, hydrophobic interactions and metal-coordination. At optimal condition, La-cholate/PAAm DN gel exhibited high tensile properties (fracture stress of 0.314 MPa, fracture strain of 29.85 mm/mm, elastic modulus of 90 kPa, and work of extension of 5.678 MJ/m(3)) and high toughness (tearing energy of 1098 J/m(2)), which are comparable to conventional chemical or hybrid DN gels. Meanwhile, La-cholate/PAAm DN gel also showed rapid self-recovery property (stiffness recovery of 84% and toughness recovery of 46% after resting for 3 min) at room temperature and lambda-dependent luminescent property under UV-light. More importantly, cholate-based supramolecular gels with DN structure could be prepared with various metal ions and monomers. Interestingly, our cholate-based DN gels were ionically conducive, which could be used as strain sensor to finely detect the human motions. We hope our design principles, along with the simple method and cholate-based DN gels, can be generally applied to develop a new generation of strong and tough LMWG-based supramolecular hydrogels with various functionalities.
机译:双网络水凝胶(DN凝胶)是最广泛地研究的高强度水凝胶之一。然而,大多数DN凝胶是大分子的关注,很少据报道低分子量胶凝器(LMWG)基于凝胶分子的超分子水凝胶以制造可回收的DN凝胶。由于机械性能低,基于LMWG的超分子水凝胶难以制造为用于人体运动监测的有用材料。在此,我们报告了一种用双网络(DN)结构(即La-Cholate / Paam DN凝胶)制造强,坚韧和有利于胆酸的基于胆晶的超分子凝胶,其由La-Cholate超分子凝胶作为第一网络和共价聚丙烯酰胺组成作为第二网络的凝胶(Paam凝胶),其中通过氢键,疏水相互作用和金属配位的协同作用,通过La(3+)离子和胆酸钠通过La(3+)离子和胆酸钠自组装。在最佳状态下,La-Cholate / Paam DN凝胶表现出高拉伸性能(裂缝应力为0.314MPa,断裂应变为29.85mm / mm,90kPa的弹性模量,以及5.678 mJ / m(3)的延伸的工作。高韧性(撕裂能量为1098 j / m(2)),与常规化学或杂交dn凝胶相当。同时,La-Cholate / PaaM DN凝胶还显示出快速的自回收性质(在室温下在紫外线下的λ依赖于λ依赖于λ依赖性发光物质时,快速的自回收性能(刚度恢复为84%,韧性恢复为46%)。更重要的是,可以用各种金属离子和单体制备具有DN结构的胆酸盐的超分子凝胶。有趣的是,我们的胆管基DN凝胶是离子有利的,可以用作应变传感器来精细地检测人类运动。我们希望我们的设计原理以及简单的方法和基于胆管的DN凝胶,可以通常应用于开发具有各种功能的新一代基于强硬的LMWG的超分子水凝胶。

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