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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Non-covalent interaction cooperatively induced stretchy, tough and stimuli-responsive polyurethane-urea supramolecular (PUUS) hydrogels
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Non-covalent interaction cooperatively induced stretchy, tough and stimuli-responsive polyurethane-urea supramolecular (PUUS) hydrogels

机译:非共价相互作用协同诱导弹性,韧性和刺激响应性聚氨酯-脲超分子(PUUS)水凝胶

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摘要

Up to now, fabrication of strong and stimuli-responsive supramolecular hydrogels via an easy molecular design and synthesis procedure is still a big challenge. In this work, a series of hydrophobically modified linear polyurethane-urea copolymers and one polyurethane copolymer were prepared via a greatly simplified one-pot approach to investigate the synergistic effect between hydrogen-bonding and hydrophobic effects. FT-IR and various mechanical performance studies show that not only a longer hydrophobic spacer (C-12) but also a stronger hydrogen-bonding unit (urea) is necessary for their synergistic effect to yield high water containing, transparent, stretchy and tough supramolecular hydrogels. Moreover, these supramolecular materials also show nice cyclic shape-memory behaviours which can be realized under mild conditions, e.g. in air and water at room temperature. The noncovalent interaction's synergistic effect and stimuli-responsive character are expected to dramatically expand the design and choice of tough and smart supramolecular hydrogels/materials for biomaterials.
机译:迄今为止,通过简单的分子设计和合成方法来制备强的和刺激响应性的超分子水凝胶仍然是一个巨大的挑战。在这项工作中,通过大大简化的一锅法制备了一系列疏水改性的线性聚氨酯-脲共聚物和一种聚氨酯共聚物,以研究氢键和疏水作用之间的协同作用。 FT-IR和各种机械性能研究表明,不仅更长的疏水性间隔基(C-12),而且更强的氢键合单元(脲),对于产生高含水,透明,可拉伸且坚韧的超分子具有协同作用是必要的水凝胶。而且,这些超分子材料还显示出良好的循环形状记忆行为,这可以在温和的条件下,例如在高温下实现。在室温下在空气和水中。非共价相互作用的协同作用和刺激响应特性有望极大地扩展用于生物材料的坚韧智能的超分子水凝胶/材料的设计和选择。

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