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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Ultralight, hydrophobic, anisotropic bamboo-derived cellulose nanofibrils aerogels with excellent shape recovery via freeze-casting
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Ultralight, hydrophobic, anisotropic bamboo-derived cellulose nanofibrils aerogels with excellent shape recovery via freeze-casting

机译:超轻,疏水,各向异性竹衍生的纤维素纳米纤维气凝胶,通过冷冻铸造具有优异的形状回收

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摘要

Cellulose aerogels have shown outstanding potential as renewable functional materials; however, their practical applications are still limited by inherent hydrophilicity and weak mechanical properties. To overcome hydro-philicity and fragility issues of aerogels, in this study, silylated bamboo-derived cellulose nanofibrils (CNF) aerogels with aligned porous structures were achieved by directionally freeze-casting a mixture of CNF suspension and methyltrimethoxysilane sol. The silylated CNF aerogels exhibited distinct aligned lamellar structures and significantly anisotropic mechanical properties. They had improved strength and stiffness in the axial direction (along the freezing direction) and excellent rapid shape recovery ability in the radial direction (perpendicular to the freezing direction) with a significant high shape recovery ratio of 92% after 100 cycles at 80% compression. Owing to their ultra-low density, hydrophobicity, and high compressive recoverability, the silylated CNF aerogels can be potentially used in a wide range of industrial applications, such as hydrophobic polymer nanocomposites, absorbents, and biomedical scaffolds.
机译:纤维素Aerogels显示出突出的可再生功能材料;然而,它们的实际应用仍然受到固有的亲水性和弱机械性能的限制。为了克服气凝胶的水力性和脆弱性问题,在本研究中,通过使CNF悬浮液和甲基三甲氧基硅烷溶胶的混合物定向,实现了具有排列多孔结构的甲硅烷基化的竹衍生的纤维素纳米纤维(CNF)气凝胶。甲硅烷基化的CNF Aerogels表现出明显的对齐的层状结构和显着各向异性的机械性能。它们在轴向(沿冷冻方向)中具有改善的强度和刚度,并且在径向(垂直于冷冻方向)中具有优异的快速形状回收能力,在80%压缩下在100次循环后具有92%的显着高形状回收率。 。由于它们的超低密度,疏水性和高压压可回收性,甲硅烷基化的CNF气凝胶可以潜在地用于各种工业应用,例如疏水性聚合物纳米复合材料,吸收剂和生物医学支架。

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