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Bundling of Cellulose Nanofibers in PEO Matrix by Aqueous Electrospinning

机译:通过静电纺丝将纤维素纳米纤维捆绑在PEO基质中

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Cellulose nanofiber (CNF), which is processed by refining wood fiber, is a promising biomass-derived material with excellent properties, including high strength and light weight. CNFs can be applied to fillers, films, and thickeners. Highly oriented and integrated CNFs can be used to produce ultra-high-strength and ultra-lightweight materials that surpass wood; however, precise alignment of CNF is still difficult. In this study, mechanically-defibrated CNF suspensions supplemented with polyethylene oxide (PEO), a good spinnable polymer, were electrospun to obtain CNF fiber bundles, and their properties were characterized. When CNFs dispersed in a PEO aqueous solution were subject to electrospinning, a nanofiber sheet was obtained. As shown in a tensile test experiment, the elastic modulus and tensile strength improved as the CNF content increased, while TEM observations showed that CNF was bundled along the axial direction. These results demonstrated that by using electrospinning, CNFs can be oriented and integrated inside the PEO fine fibers, leading to the realization of a high-strength material in which the CNF bundle is highly oriented.
机译:通过精炼木纤维加工的纤维素纳米纤维(CNF)是具有优异性质的有前途的生物质衍生材料,包括高强度和重量轻。 CNF可以应用于填料,薄膜和增稠剂。高度定向和集成的CNF可用于生产超高强度和超轻型材料,超越木材;然而,CNF的精确对准仍然困难。在该研究中,将补充有聚环氧乙烷(PEO)的机械后纤维的CNF悬浮液,良好的可纺聚合物是Electromath以获得CNF纤维束,其性质表征。当分散在PEO水溶液中的CNF被静电纺丝经受静电纺丝时,得到纳米纤维片。如拉伸试验实验所示,随着CNF含量的增加而改善的弹性模量和拉伸强度,而TEM观察表明CNF沿轴向捆扎。这些结果证明,通过使用静电纺丝,CNF可以定向并整体在PEO细纤维内部,导致实现高强度材料,其中CNF束高度取向。

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