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Stretchable and Strong Cellulose Nanopaper Structures Based on Polymer-Coated Nanofiber Networks: An Alternative to Nonwoven Porous Membranes from Electrospinning

机译:基于聚合物涂层的纳米纤维网络的可拉伸和强力纤维素纳米纸结构:从静电纺丝到无纺布多孔膜的替代。

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摘要

Nonwoven membranes based on electrospun fibers are of great interest in applications such as biomedical, filtering, and protective clothing. The poor mechanical performance is a limitation, as is some of the electrospinning solvents. To address these problems, porous nonwoven membranes based on nanofibrillated cellulose (NFC) modified by a hydroxyethyl cellulose (HEC) polymer coating are prepared. NFC/HEC aqueous suspensions are subjected to simple vacuum filtration in a paper-making fashion, followed by supercritical CO2 drying. These nonwoven nanocomposite membranes are truly nanostructured and exhibit a nanoporous network structure with high specific surface area, as analyzed by nitrogen adsorption and FE-SEM. Mechanical properties evaluated by tensile tests show high strength combined with remarkably high strain to failure of up to 55%. XRD analysis revealed significant fibril realignment during tensile stretching. After postdrawing of the random mats, the modulus and strength are strongly increased. The present preparation route uses components from renewable resources, is environmentally friendly, and results in permeable membranes of exceptional mechanical performance.
机译:基于电纺纤维的非织造膜在诸如生物医学,过滤和防护服的应用中非常受关注。较差的机械性能是一个局限性,某些静电纺丝溶剂也是如此。为了解决这些问题,制备了基于通过羟乙基纤维素(HEC)聚合物涂层改性的纳米原纤化纤维素(NFC)的多孔非织造膜。将NFC / HEC水性悬浮液以造纸方式进行简单的真空过滤,然后进行超临界CO2干燥。这些非织造的纳米复合膜是真正的纳米结构,并且具有高比表面积的纳米孔网络结构,通过氮吸附和FE-SEM分析。通过拉伸试验评估的机械性能显示出高强度,并具有高达55%的非常高的破坏应变率。 XRD分析显示拉伸拉伸期间显着的原纤维重新排列。在后拉伸无序毡之后,模量和强度大大提高。当前的制备路线使用来自可再生资源的组分,对环境友好,并导致具有优异机械性能的可渗透膜。

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