Guo Fei, Li Bingzhang, Ding Rui, Li Dongsheng, Jiang Xiaobin, He Gaohong, Xiao Wu
State Key Laboratory of Fine Chemicals, Department of Chemical Engineering, Dalian University of Technology, 2 Linggong Road, Dalian 116024, China.
State Key Laboratory of Fine Chemicals, School of Petroleum and Chemical Engineering, Dalian University of Technology, 2 Dagong Road, Panjin 124221, China.
Membranes (Basel). 2021 Sep 7;11(9):693. doi: 10.3390/membranes11090693.
Mixing a polymer matrix and nanofiller to prepare a mixed matrix membrane (MMM) is an effective method for enhancing gas separation performance. In this work, a unique UiO-66-decorated halloysite nanotubes composite material (UiO-66@HNT) was successfully synthesized via a solvothermal method and dispersed into the Pebax-1657 matrix to prepare MMMs for CO/N separation. A remarkable characteristic of this MMM was that the HNT lumen provided the highway for CO diffusion due to the unique affinity of UiO-66 for CO. Simultaneously, the close connection of the UiO-66 layer on the external surface of HNTs created relatively continuous pathways for gas permeation. A suite of microscopy, diffraction, and thermal techniques was used to characterize the morphology and structure of UiO-66@HNT and the membranes. As expected, the embedding UiO-66@HNT composite materials significantly improved the separation performances of the membranes. Impressively, the as-obtained membrane acquired a high CO permeability of 119.08 Barrer and CO/N selectivity of 76.26. Additionally, the presence of UiO-66@HNT conferred good long-term stability and excellent interfacial compatibility on the MMMs. The results demonstrated that the composite filler with fast transport pathways designed in this study was an effective strategy to enhance gas separation performance of MMMs, verifying its application potential in the gas purification industry.
将聚合物基体与纳米填料混合以制备混合基质膜(MMM)是提高气体分离性能的有效方法。在本工作中,通过溶剂热法成功合成了一种独特的UiO-66修饰的埃洛石纳米管复合材料(UiO-66@HNT),并将其分散到Pebax-1657基体中以制备用于CO/N2分离的MMM。这种MMM的一个显著特点是,由于UiO-66对CO具有独特的亲和力,HNT管腔为CO扩散提供了通道。同时,HNTs外表面上的UiO-66层的紧密连接为气体渗透创造了相对连续的路径。使用了一系列显微镜、衍射和热分析技术来表征UiO-66@HNT和膜的形态与结构。正如预期的那样,嵌入的UiO-66@HNT复合材料显著提高了膜的分离性能。令人印象深刻的是,所制备的膜具有119.08 Barrer的高CO渗透率和76.26的CO/N2选择性。此外,UiO-66@HNT的存在赋予了MMM良好的长期稳定性和优异的界面相容性。结果表明,本研究中设计的具有快速传输通道的复合填料是提高MMM气体分离性能的有效策略,验证了其在气体净化行业的应用潜力。