Wang Yi, Li Liang, Zhang Fangli, Wang Huajiang, Cui Zhaoliang, Wang Zhaohui, Wang Xiaozu
State Key Laboratory of Materials-Oriented Chemical Engineering, College of Chemical Engineering, Nanjing Tech University, Nanjing 210009, China.
National Engineering Research Center for Special Separation Membrane, Nanjing Tech University, Nanjing 210009, China.
ACS Appl Mater Interfaces. 2025 Feb 12;17(6):9774-9785. doi: 10.1021/acsami.4c18217. Epub 2025 Jan 28.
Mixed matrix membranes (MMMs) can significantly improve gas separation performance, but the type and state of the filler in the membrane matrix are key indicators for the development of MMMs. Therefore, in this work, 6FDA-DAM/ODA (1:1), metal-organic frameworks (MOFs) with different particle sizes (UiO-66 and UiO-66-NH) were synthesized, and then MOFs were doped into 6FDA-DAM/ODA to prepare MMMs. The effects of the dopant materials and their particle sizes on the gas separation performance of the membranes were investigated by testing the permeability of the MMMs to H, CO, CH, and N. When the dopant material was UIO-66, the permeability and selectivity of MMMs for each gas were significantly improved compared with that of the original membrane; when the dopant material was 300 nm UIO-66-NH with a loading of 10 wt %, the permeability performance and the CO/CH selectivity increased from 44.1 to 57.2 compared with that of the original membrane. The permeation performance for CO, N, and H and the selectivity for CO/N, H/N, and H/CH were also significantly improved. In terms of comprehensive separation performance, doping 300 nm UiO-66-NH was better than doping 70 and 400 nm UiO-66-NH and also showed excellent performance in 50:50 (vol/vol) CO/CH binary mixed gas separation. This work provides an idea for the fabrication of MMMs for high-performance gas separation.
混合基质膜(MMMs)能够显著提高气体分离性能,但膜基质中填料的类型和状态是混合基质膜发展的关键指标。因此,在本工作中,合成了不同粒径的6FDA-DAM/ODA(1:1)、金属有机框架材料(MOFs)(UiO-66和UiO-66-NH),然后将MOFs掺杂到6FDA-DAM/ODA中制备混合基质膜。通过测试混合基质膜对H、CO、CH和N的渗透率,研究了掺杂材料及其粒径对膜气体分离性能的影响。当掺杂材料为UiO-66时,混合基质膜对各气体的渗透率和选择性与原始膜相比有显著提高;当掺杂材料为负载量10 wt%的300 nm UiO-66-NH时,与原始膜相比,渗透性能和CO/CH选择性从44.1提高到了57.2。对CO、N和H的渗透性能以及对CO/N、H/N和H/CH的选择性也有显著提高。在综合分离性能方面,掺杂300 nm UiO-66-NH优于掺杂70和400 nm UiO-66-NH,并且在50:50(体积/体积)的CO/CH二元混合气体分离中也表现出优异的性能。这项工作为制备用于高性能气体分离的混合基质膜提供了思路。