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首页> 外文期刊>Biomacromolecules >Cellulose Nanofiber/Nanocrystal Reinforced Capsules: A Fast and Facile Approach Toward Assembly of Liquid-Core Capsules with High Mechanical Stability
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Cellulose Nanofiber/Nanocrystal Reinforced Capsules: A Fast and Facile Approach Toward Assembly of Liquid-Core Capsules with High Mechanical Stability

机译:纤维素纳米纤维/纳米晶体增强胶囊:快速,简便的方法来组装具有高机械稳定性的液芯胶囊

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Liquid-core capsules of high mechanical stability open up for many solid state-like applications where functionality depending on liquid mobility is vital, Herein, a novel concept for fast and facile improvement of the mechanical properties of walls, of liquid-core capsules is reported. By imitating nature's own way of enhancing the mechanical properties in liquid-core capsules, the parenchyma plant cells found in fruits and, vegetables, a blend of short. cellulose nanofibers (<1 μm, NFC) and nanocrystals (CNC) was exploited in the creation of the capsule walls. The NFC/CNC blend was prepared from a new version of the classical wood pulp hydrolysis. The capsule shell consisted of a covalently (by aromatic diisocyanate) cross-linked NFC/CNC structure at the outer capsule wall and an inner layer dominated by aromatic polyurea. The mechanical properties revealed an effective capsule elastic modulus of 4.8 GPa at 17 wt % NFC/CNC loading, about six times higher compared to a neat aromatic polyurea capsule (0.79 GPa) and 3 orders of magnitude higher than previously reported capsules from regenerated cellulose (0.0074 GPa). The outstanding mechanical properties are ascribed to the dense nanofiber structure, present in the outer part of the capsule wall, that is formed by oriented NFC/CNC of high average aspect ratio (L/d ~ 70) and held together by both covalent (urethane bonds) and physical bonds (hydrogen bonds).
机译:具有高机械稳定性的液芯胶囊可用于许多固态应用,在这些应用中,取决于液体流动性的功能至关重要。在此,据报道,有一种新颖的概念可以快速,方便地改善壁的机械性能。 。通过模仿自然界自己增强液芯胶囊机械性能的方式,在水果和蔬菜中发现的薄壁植物细胞是一种短混合物。纤维素纳米纤维(<1μm,NFC)和纳米晶体(CNC)被用于胶囊壁的创建。 NFC / CNC共混物是由经典木浆水解的新版本制备的。胶囊壳由在胶囊外壁和由芳族聚脲为主的内层的共价(通过芳族二异氰酸酯)交联的NFC / CNC结构组成。机械性能显示,在17 wt%的NFC / CNC负载下,有效的胶囊弹性模量为4.8 GPa,比纯芳族聚脲胶囊(0.79 GPa)高约六倍,比以前报道的再生纤维素胶囊高3个数量级( 0.0074 GPa)。优异的机械性能归因于存在于胶囊壁外部的致密纳米纤维结构,该结构由具有高平均纵横比(L / d〜70)的定向NFC / CNC形成,并通过两种共价键(氨基甲酸酯)结合在一起键)和物理键(氢键)。

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