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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >lonically Cross-Linked Silk Microfibers/Alginate Tough Composite Hydrogels with Hierarchical Structures
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lonically Cross-Linked Silk Microfibers/Alginate Tough Composite Hydrogels with Hierarchical Structures

机译:孤独交联的丝微纤维/海藻酸盐坚韧复合水凝胶,具有等级结构

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Developing hydrogels with enhanced mechanical properties has attracted broad attention in recent years. In this work, we propose a facile procedure to prepare tough composite hydrogels by incorporating silk microfibers (mSF) into alginate ionically cross -linked networks. The mSF gives rise to ionic bonds with Ca2+ and interfacial hydrogen bonds because of the carboxyl groups on the surface of mSF, and the neighboring alginate chains are interlinked by mSF, which synergistically led to efficient energy dissipation and prevention of stress concentration. The attained composite hydrogels show superior elastic modulus (1.58 MPa), tensile strength (1.60 MPa), and unique adaptive interface response. Moreover, the mechanical properties of the composite hydrogels can be tailored by the concentration of mSF and the time immersing the composite hydrogels in CaCl2 solution post-cross-linking. Intriguingly, the mechanical properties can be further improved through a prestretching methodology to align the alginate chains along the stress direction, where the oriented hierarchical structures are formed and well-retained in the prestretched composite hydrogels. We envisage that this study provides a general strategy for designing composite hydrogels with both excellent and tunable mechanical properties, which enriches the use of alginate hydrogels for promising applications where high loading is needed.
机译:近年来,在机械性能增强的水凝胶引起了广泛的关注。在这项工作中,我们提出了一种容易性的过程来制备坚韧的复合水凝胶来通过将丝微纤维(MSF)掺入藻酸盐离子交联网络中。由于MSF的表面上的羧基,MSF与CA2 +和界面氢键产生离子键,并且相邻的藻酸盐链通过MSF相互连接,这协同导致高效的能量耗散和防止应力浓度。达到的复合水凝胶显示出优异的弹性模量(1.58MPa),拉伸强度(1.60MPa)和独特的适应界面响应。另外,复合水凝胶的机械性能可以通过MSF的浓度和浸入CaCl 2溶液后的复合水凝胶的时间来定制。有趣的是,通过预伸位化方法可以进一步改善机械性能以沿着应力方向对准藻酸盐链,其中取向的分层结构形成和保留在预粒复合水凝胶中。我们设想本研究提供了一种用于设计复合水凝胶的一般策略,其具有优异和可调的机械性能,这富集了藻酸盐水凝胶的使用,以便在需要高负荷的前途的应用中使用。

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