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Revealing Strong Nanocomposite Hydrogels Reinforced by Cellulose Nanocrystals: Insight into Morphologies and Interactions

机译:揭示纤维素纳米晶体增强的强纳米复合水凝胶:形态和相互作用的见解。

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Understanding the reinforcement mechanism by dispersing nanoscale particles into a polymer matrix is a critical challenge toward refining control of the composite properties. In this paper, the morphologies and interactions of cellulose nanocrystal/poly( acrylic acid) (CNC/PAA) nanocomposite hydrogels are demystified based on a facile synthetic platform. Two sources of CNCs with different aspect ratios are applied to model the reinforcement process, and the uniaxial tensile measurements indicate that the CNC aspect ratio and the nanocomposite mechanical behaviors are coupled, where the values of aspect ratios and nonpermanent interactions between the fillers and matrix dominate the reinforcement. Dynamic mechanical analysis is performed to examine the nature of the constrained polymer as the semicrystalline fractions, and the results indicate that polymer chain mobility in the vicinity of CNC surfaces is significantly reduced, providing new insight into the origin of the reinforcement mechanism. Rheologkal analysis and transmission electron microscopy observations show that both stepwise dissociation and polymer chain rearrangements contribute to the viscoelastic behaviors of the nanocomposite hydrogels. The increased modulus of the hydrogels is correlated to the volume of the constrained polymer, where the CNCs impart significant enhancement to the entanglement network. This study of the structure-property relationship deepens the understanding of the filler reinforcement mechanism and provides valuable knowledge for designing high performance nanocomposite hydrogels from cellulose as a raw material.
机译:通过将纳米级颗粒分散到聚合物基质中来了解增强机理是对复合性能进行细化控制的关键挑战。在本文中,基于方便的合成平台,对纤维素纳米晶体/聚丙烯酸(CNC / PAA)纳米复合水凝胶的形态和相互作用进行了神秘化。应用两种具有不同长宽比的CNCs来源对增强过程进行建模,单轴拉伸测量表明CNC长宽比与纳米复合材料力学行为是耦合的,其中长宽比的值以及填料与基体之间的非永久性相互作用占主导加固。进行动态力学分析以检查受约束的聚合物作为半结晶级分的性质,结果表明CNC表面附近的聚合物链迁移率显着降低,这为增强机理的起源提供了新的见识。流变学分析和透射电子显微镜观察表明,逐步解离和聚合物链重排均有助于纳米复合水凝胶的粘弹性行为。水凝胶增加的模量与受约束聚合物的体积有关,其中CNC显着增强了缠结网络。对结构-性质关系的研究加深了对填料增强机理的理解,并为以纤维素为原料设计高性能纳米复合水凝胶提供了有价值的知识。

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