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A unique high mechanical strength dialdehyde microfibrillated cellulose/gelatin composite hydrogel with a giant network structure

机译:具有巨大网络结构的独特高机械强度二醛微纤维纤维素/明胶复合水凝胶

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Microfibrillated cellulose (MFC) with diameters less than 100 nm and a three-dimensional network structure was produced through high-pressure homogenization. MFC was surface modified by periodate to prepare dialdehyde microfibrillated cellulose (DAMFC). DAMFC/gelatin composite hydrogel was prepared by mixing DAMFC with gelatin solution. A Schiff base was formed through the reaction between the aldehyde groups of DAMFC and amino groups of gelatin; therefore, a giant three-dimensional network structure was formed in the composite hydrogel. Since the nano reinforcing agent DAMFC was covalently bonded to the matrix gelatin, the load could be efficiently transferred through the giant network, therefore, the composite hydrogel presented extremely high mechanical properties. The compression strength of DAMFC/gelatin 25/75 (wt/wt) hydrogel dramatically increased to 1.63 MPa, 41 times that of the pure gelatin. Morphology observation revealed that the pore size of the composite hydrogel could be regulated by the DAMFC oxidation level. The composite scaffold demonstrated a good swelling capacity and could successfully maintain its shape in buffer solution. It should be noted that the giant network is different from the double network or fiber reinforced hydrogel. The present work shows that by forming a giant network structure through chemical crosslinking with the reinforcing agent itself, an extremely high mechanical strength composite hydrogel could be obtained.
机译:通过高压均质化产生直径小于100nm的微纤化纤维素(MFC)和三维网络结构。通过碘酸盐进行表面改性MFC以制备二醛微纤维纤维素(DAMFC)。通过将DAMFC与明胶溶液混合来制备DAMFC / Gelatin复合水凝胶。通过DAMFC和明胶的氨基之间的反应形成席夫碱;因此,在复合水凝胶中形成巨大的三维网络结构。由于纳米增强剂DAMFC与基质明胶共价键合,因此可以通过巨型网络有效地转移负载,因此复合水凝胶呈现极高的机械性能。 DAMFC / GELATIN 25/75(WT / WT)水凝胶的压缩强度显着增加至1.63MPa,纯明胶的41倍。形态学观察表明,复合水凝胶的孔径可以通过DAMFC氧化水平调节。复合支架呈现出良好的溶胀能力,可以成功地保持其在缓冲溶液中的形状。应注意,巨型网络与双网络或纤维增强水凝胶不同。本作者表明,通过用增强剂本身的化学交联形成巨型网络结构,可以获得极高的机械强度复合水凝胶。

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