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MOF–polymer enhanced compatibility: post-annealed zeolite imidazolate framework membranes inside polyimide hollow fibers

机译:MOF-聚合物增强相容性:在聚酰亚胺中空纤维内退火的沸石咪唑酯骨架膜

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摘要

Thermal annealing, a commonly used procedure for improving the performance of polymeric membranes, is in this work exploited in the presence of a metal-organic framework (MOF) supported layer. MOFs and polymers are materials with a common organic character, suggesting an enhanced affinity between them when used together in membrane separation. Zeolite-like imidazolate frameworks (ZIFs) ZIF-8 and ZIF-93 with sod and rho structures and pore apertures of 0.34 and 0.36 nm, respectively, have been grown inside 356 mm OD co-polyimide P84 hollow fibers by microfluidics, leading to continuous supported membranes. When these membranes were thermally in situ annealed below the glass transition temperature, while monitoring both H-2 and CH4 permeances, the MOF-polymer adhesion was enhanced. Thus the gas separation selectivity increased without any significant reduction in the gas permeance, and H-2/CH4 and CO2/CH4 maximum selectivities of 103 and 18 (ZIF-8) and 101 and 20 (ZIF93) were respectively measured. The good compatibility between MOF and polymer made improvements possible in the annealing of the membrane once it was prepared. If the annealing of the polymer was carried out before the MOF synthesis, the polymer chain rearrangement and surface smoothing prevented an optimum MOF-polymer interaction and the separation performance worsened. These results proved the compatibility between both materials and their synergistic contribution to gas selective transport
机译:热退火,用于改善聚合物膜的性能的常用方法,在该工作中在金属有机骨架(MOF)支撑层的存在下阐述。 MOF和聚合物是具有常见有机特征的材料,表明在膜分离中使用时与它们之间的增强亲和力。沸石咪唑酯框架(ZIFS)ZIF-8和ZIF-93分别通过Microfluicics在356mm OD的二聚体P84中空纤维内生长在356mm OD中的孔隙和0.36nm的孔隙孔径和孔隙孔。通过微流体,导致连续支持的膜。当这些膜原位热退火时,在监测H-2和CH 4渗透的同时,加强MOF-聚合物粘附。因此,分别测量气体分离选择性而没有任何显着降低的气体渗透性,H-2 / CH 4和CO 2 / CH 4最大选择性为103和18(ZIF-8)和101和20(ZIF93)。 MOF和聚合物之间的良好相容性使其在膜的退火中可能改善了它一旦制备就制备。如果在MOF合成之前进行聚合物的退火,则聚合物链重排和表面平滑防止了最佳的MOF-聚合物相互作用,并且分离性能恶化。这些结果证明了两种材料与其协同贡献与天然气选择性运输之间的相容性

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