Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo 315201, P.R. China.
Sci Rep. 2016 Sep 12;6:33185. doi: 10.1038/srep33185.
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.
基于氧化石墨烯(GO)的膜已广泛应用于基于堆叠 GO 片形成的纳米通道的尺寸排阻效应的分子分离。然而,制备具有高强度和结构稳定性的独立式 GO 基膜仍然是一项挑战,因为这是在水溶液中进行分离应用的前提。在这里,设计并制备了一种基于细菌纤维素(BC)和 GO 的独立复合膜。BC 网络提供了一个多孔骨架来展开 GO 片并均匀地融入 GO 层中,这赋予了 BC+GO 复合膜良好的水稳定性、优异的拉伸强度以及改善的韧性,保证了其在水环境中的分离适用性。所得的 BC+GO 膜对不同尺寸的不同无机/有机离子表现出明显不同的渗透性能,特别是它可以快速分离纳米级和埃级的离子。因此,这种新型复合膜被认为是在水净化、食品工业、生物医学和制药以及燃料分离等应用中很有前途的候选材料。