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Hydrothermal Gelation of Aqueous Cellulose Nanocrystal Suspensions

机译:纤维素纳米晶悬浮液的水热凝胶化

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We report the facile preparation of gels from the hydrothermal treatment of suspensions of cellulose nanocrystals (CNCs). The properties of the hydrogels have been investigated by rheology, electron microscopy, and spectroscopy with respect to variation in the temperature, time, and CNC concentration used in preparation. Desulfation of the CNCs at high temperature appears to be responsible for the gelation of the CNCs, giving highly porous networks. The viscosity and storage modulus of the gels was shown to increase when samples were prepared at higher treatment temperature. Considering the wide natural abundance and biocompatibility of CNCs, this simple, green approach to CNC-based hydrogels is attractive for producing materials that can be used in drug delivery, insulation, and as tissue scaffolds.
机译:我们报告了纤维素纳米晶体(CNCs)悬浮液的水热处理对凝胶的简便制备。通过流变学,电子显微镜和光谱学研究了水凝胶的性质,涉及制备中使用的温度,时间和CNC浓度的变化。 CNC的高温脱硫似乎是CNC凝胶化的原因,从而形成了高度多孔的网络。当在较高的处理温度下制备样品时,凝胶的粘度和储能模量显示出增加。考虑到CNC的广泛自然丰度和生物相容性,这种基于CNC的水凝胶的简单绿色方法对于生产可用于药物输送,隔离和用作组织支架的材料具有吸引力。

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