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首页> 外文期刊>Advanced Materials >A Facile Method to Fabricate Anisotropic Hydrogels with Perfectly Aligned Hierarchical Fibrous Structures
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A Facile Method to Fabricate Anisotropic Hydrogels with Perfectly Aligned Hierarchical Fibrous Structures

机译:一种制备具有完美排列的分层纤维结构的各向异性水凝胶的简便方法

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摘要

Natural structural materials (such as tendons and ligaments) are comprised of multiscale hierarchical architectures, with dimensions ranging from nano- to macroscale, which are difficult to mimic synthetically. Here a bioinspired, facile method to fabricate anisotropic hydrogels with perfectly aligned multiscale hierarchical fibrous structures similar to those of tendons and ligaments is reported. The method includes drying a diluted physical hydrogel in air by confining its length direction. During this process, sufficiently high tensile stress is built along the length direction to align the polymer chains and multiscale fibrous structures (from nano- to submicro- to microscale) are spontaneously formed in the bulk material, which are well-retained in the reswollen gel. The method is useful for relatively rigid polymers (such as alginate and cellulose), which are susceptible to mechanical signal. By controlling the drying with or without prestretching, the degree of alignment, size of superstructures, and the strength of supramolecular interactions can be tuned, which sensitively influence the strength and toughness of the hydrogels. The mechanical properties are comparable with those of natural ligaments. This study provides a general strategy for designing hydrogels with highly ordered hierarchical structures, which opens routes for the development of many functional biomimetic materials for biomedical applications.
机译:天然结构材料(例如,腱和韧带)由多尺度的层次结构组成,其尺寸范围从纳米到宏观,很难用合成的方式模仿。这里报道了一种生物启发的,容易的方法来制造各向异性水凝胶,该水凝胶具有与肌腱和韧带类似的完全对齐的多尺度分层纤维结构。该方法包括通过限制其长度方向在空气中干燥稀释的物理水凝胶。在此过程中,沿长度方向会建立足够高的拉伸应力,以使聚合物链对齐,并在散装材料中自发形成多尺度的纤维结构(从纳米级到亚微米级到微米级),这些结构保留在重新溶胀的凝胶中。该方法对于易受机械信号影响的相对刚性的聚合物(例如藻酸盐和纤维素)很有用。通过控制有无预拉伸的干燥,可以调整排列程度,上部结构的大小和超分子相互作用的强度,从而灵敏地影响水凝胶的强度和韧性。机械性能与天然韧带相当。这项研究为设计具有高度有序的层次结构的水凝胶提供了一般策略,这为开发许多用于生物医学应用的功能仿生材料开辟了道路。

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