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Production and Characterization of a New Bacterial Cellulose/Poly(Vinyl Alcohol) Nanocomposite

机译:一种新型细菌纤维素/聚乙烯醇的纳米复合材料的生产与表征

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Bacterial cellulose (BC) is characterized for its high water holding capacity, high crystallinity, an ultrafine fiber network and high tensile strength. This work demonstrates the production of a new interpenetrated polymer network nanocomposite obtained through the incorporation of poly(vinyl alcohol) (PVA) on the BC matrix and evaluates the effect of oven drying on the morphological, mechanical and mass transfer properties of the composite membranes. Both the addition of PVA and oven drying induce the appearance of larger pores (circa 1–3 µm in average diameter) in dried BC/PVA membranes. Both types of treatments also affect the permeability of the composite, as assessed by the diffusion coefficients of polyethylene glycol (PEG) molecules (900, 8,000, 35,000 and 100,000 Da) across the membranes. Finally, the Young’s modulus of dry pristine BC decreases following PVA incorporation, resulting in a change from 3.5 GPa to 1 GPa and a five-fold loss in tensile strength.
机译:细菌纤维素(BC)具有高保水能力,高结晶度,超细纤维网络和高拉伸强度的特点。这项工作演示了通过在BC基质上掺入聚乙烯醇(PVA)获得的一种新型互穿聚合物网络纳米复合材料,并评估了烘箱干燥对复合膜的形态,机械和传质特性的影响。在干燥的BC / PVA膜中,添加PVA和烤箱干燥都会导致出现较大的孔(平均直径约为1-3 µm)。通过聚乙二醇(PEG)分子(900、8,000、35,000和100,000 Da)在整个膜上的扩散系数评估,两种处理方法均会影响复合材料的渗透性。最后,加入PVA后,干原始BC的杨氏模量降低,导致从3.5 GPa变为1 GPa,拉伸强度损失了五倍。

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