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Ion-Mediated Gelation of Aqueous Suspensions of Cellulose Nanocrystals

机译:纤维素纳米晶体水悬浮液的离子介导凝胶化

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摘要

Nanofibrillar hydrogels are an important class of biomaterials with applications as catalytic scaffolds, artificial extracellular matrixes, coatings, and drug delivery materials. In the present work, we report the results of a comprehensive study of nanofibrillar hydrogels formed by cellulose nanocrystals (CNCs) in the presence of cations with various charge numbers and ionic radii. We examined sol gel transitions in aqueous CNC suspensions and the rheological and structural properties of the CNC hydrogels. At a particular CNC concentration, with increasing charge and cation size, the dynamic shear moduli and mesh size in the hydrogel increased. These effects were ascribed to a stronger propensity of CNCs for side-by-side association. The resulting hydrogels had an isotropic nanofibrillar structure. A combination of complementary techniques offered insight into structure-property relationships of CNC hydrogels, which are important for their potential applications.
机译:纳米原纤维水凝胶是一类重要的生物材料,具有催化支架,人工细胞外基质,涂层和药物输送材料的应用。在目前的工作中,我们报告了由纤维素纳米晶体(CNCs)在具有不同电荷数和离子半径的阳离子存在下形成的纳米原纤维水凝胶的综合研究结果。我们研究了水性CNC悬浮液中的溶胶凝胶转变以及CNC水凝胶的流变和结构特性。在特定的CNC浓度下,随着电荷和阳离子尺寸的增加,水凝胶中的动态剪切模量和筛孔尺寸增加。这些影响归因于CNC控制器更倾向于并排关联。所得水凝胶具有各向同性的纳米原纤维结构。互补技术的结合提供了对CNC水凝胶的结构-特性关系的深入了解,这对于它们的潜在应用很重要。

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