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Preparation of cross-linked cellulose nanofibril aerogel with water absorbency and shape recovery

机译:具有吸水性和形状恢复性的交联纤维素纳米原纤维气凝胶的制备

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摘要

Cellulose nanofibril (CNF) aerogels are promising materials for various applications because of their highly porous and ultralight characteristics. The fiber network of CNF aerogels held together by hydrogen bonding and mechanical entanglement of adjacent fibers is easily destroyed when it is exposed to water. In this study, cross-linked CNF aerogels were prepared using maleic acid and sodium hypophosphite as cross-linking agents. In the first step of treatment, CNF dispersed in water was reacted with maleic acid to form an ester linkage. Sodium hypophosphite was then added to the maleic acid-functionalized CNF suspension and the suspension was rapidly frozen using liquid nitrogen. CNF aerogel was obtained after freeze drying. The cross-linking of the cellulose was formed by the reaction between the carbon-carbon double bond of maleic acid-functionalized CNF and hypophosphite. The cross-linked CNF aerogel exhibited good network stability in water and springiness after compression.
机译:纤维素纳米原纤维(CNF)气凝胶具有高度的多孔性和超轻的特性,因此是用于各种应用的有前途的材料。当CNF气凝胶的纤维网络暴露于水时,通过氢键键合和相邻纤维的机械缠结而保持在一起的纤维网络很容易被破坏。在这项研究中,使用马来酸和次磷酸钠作为交联剂制备了交联的CNF气凝胶。在第一步处理中,分散在水中的CNF与马来酸反应形成酯键。然后将次磷酸钠添加到马来酸官能化的CNF悬浮液中,并使用液氮将悬浮液快速冷冻。冷冻干燥后获得CNF气凝胶。纤维素的交联是通过马来酸官能化的CNF的碳-碳双键与次磷酸盐之间的反应形成的。交联的CNF气凝胶在水中表现出良好的网络稳定性,压缩后表现出弹性。

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