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Double-Crosslinked GO Interlayer Framework as a Pervaporation Hybrid Membrane with High Performance

机译:双交联GO夹层框架作为具有高性能的全蒸发混合膜

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Graphene oxide (GO), as a two-dimensional structure material, has attracted widespread attention in the field of molecule sieving. However, GO-based membranes usually exhibit undesirable separation performance because the microstructure of GO is difficult to adjust. Herein, a novel double-crosslinking strategy for tuning the interlayer spacing of GO is reported. The hybrid membrane fabricated by the double-crosslinking strategy was used for pervaporation (PV) dehydration of isopropanol. To achieve high-performance of the PV hybrid membranes, the effects of operating cycles, chitosan concentration, and GO concentration were systematically investigated. The PV hybrid membranes were characterized by Fourier transform infrared spectroscopy, X-ray photoelectron spectroscopy, water contact angle measurement, and scanning electron microscopy. The results demonstrate that the interlayer of GO can be adjusted successfully by the double-crosslinking strategy. The fabricated hybrid membrane containing 0.1 wt % GO exhibited excellent performance with a flux of 4391 g/m2h and a separation factor of 1491, which indicated that the double-crosslinking strategy may extend the applications of GO in the field of membrane separation.
机译:作为二维结构材料的氧化石墨烯(GO)在分子筛领域引起了广泛的关注。然而,基于GO的膜通常表现出不期望的分离性能,因为GO的微结构难以调节。在此,报道了用于调节GO的层间间隔的新颖的双交联策略。通过双交联策略制备的杂化膜用于异丙醇的全蒸发(PV)脱水。为了获得高性能的PV混合膜,系统地研究了操作周期,壳聚糖浓度和GO浓度的影响。通过傅立叶变换红外光谱,X射线光电子能谱,水接触角测量和扫描电子显微镜对PV混合膜进行了表征。结果表明,双交联策略可以成功调节GO的中间层。所制备的含有0.1 wt%GO的杂化膜表现出优异的性能,通量为4391 g / m2h,分离因子为1491,这表明双交联策略可能会扩展GO在膜分离领域的应用。

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