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Counterion Size and Nature Control Structural and Mechanical Response in Cellulose Nanofibril Nanopapers

机译:纤维素纳米纤维纳米纸中的抗离子尺寸和性质控制结构和力学响应

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Nanopapers formed from aqueous dispersions of cellulose nanofibrils (CNFs) combine stiffness, strength, and toughness. Yet, delicate interactions operate between the CNFs during nanopaper formation and mechanical deformation. We unravel in detail how counterions, being either of the organic alkyl ammonium kind (NR4+) or of the earth metal series (Li+, Na+, Cs+), need to be chosen to achieve outstanding combinations of stiffness, strength, and toughness, extending to previously unreached territories. We relate structure formation processes in terms of colloidal stabilization to nanostructural details such as porosity and ability for swelling, as well as to interfibrillar interactions in bulk and macroscale mechanical properties. We demonstrate that our understanding also leads to new levels of ductility in bioinspired CNF/polymer nanocomposites at high levels of reinforcements. These results contribute to future rational design of CNF-based high-performance materials.
机译:由纤维素纳米纤维 (CNF) 的水分散体形成的纳米纸结合了刚度、强度和韧性。然而,在纳米纸形成和机械变形过程中,CNF之间发生了微妙的相互作用。我们详细阐述了如何选择有机烷基铵类 (NR4+) 或地球金属系列(Li+、Na+、Cs+)的反离子以实现刚度、强度和韧性的出色组合,并延伸到以前未达到的领域。我们将胶体稳定性的结构形成过程与纳米结构细节(如孔隙率和溶胀能力)以及体和宏观尺度机械性能中的纤维间相互作用联系起来。我们证明,我们的理解也使生物启发的CNF/聚合物纳米复合材料在高水平的增强材料中具有新的延展性水平。这些结果有助于未来合理设计CNF基高性能材料。

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