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Freestanding bacterial cellulose-graphene oxide composite membranes with high mechanical strength for selective ion permeation

机译:具有高机械强度的独立细菌纤维素 - 石墨烯氧化物复合膜,用于选择性离子渗透

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Graphene oxide (GO) based membranes have been widely applied in molecular separation based on the size exclusion effect of the nanochannels formed by stacked GO sheets. However, it's still a challenge to prepare a freestanding GO-based membrane with high mechanical strength and structural stability which is prerequisite for separation application in aqueous solution. Here, a freestanding composite membrane based on bacterial cellulose (BC) and GO is designed and prepared. BC network provides a porous skeleton to spread GO sheets and uniformly incorporates into the GO layers, which endows the BC?+?GO composite membrane with well water-stability, excellent tensile strength, as well as improved toughness, guaranteeing its separation applicability in water environment. The resulting BC?+?GO membrane exhibits obviously discrepant permeation properties for different inorganic/organic ions with different size, and in particular, it can quickly separate ions in nano-scale from angstrom-scale. Therefore, this novel composite membrane is considered to be a promising candidate in the applications of water purification, food industry, biomedicine, and pharmaceutical and fuel separation.
机译:基于石墨烯氧化物(GO)的膜已基于由堆叠的去纸板形成的纳米烷基尔的尺寸排阻效应广泛应用于分子分离中。然而,制备具有高机械强度和结构稳定性的独立的去型膜是一项挑战,这是在水溶液中分离应用的先决条件。这里,设计并制备基于细菌纤维素(BC)并进行的独立式复合膜。 BC网络提供了一种多孔骨架来扩散去纸,并均匀地结合到GO层中,该GO层赋予BCα+ +α+ +α+且具有良好的水稳定性的复合膜,优异的拉伸强度,以及改善的韧性,保证其在水中的分离适用性环境。所得的BC?+ + +膜膜具有不同尺寸的不同无机/有机离子的显着差异渗透性质,特别是它可以从抗埃尺度纳米级以纳米级分离离子。因此,这种新型复合膜被认为是水净化,食品工业,生物医药和药物和燃料分离应用中的有希望的候选者。

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