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MIL-53 frameworks in mixed-matrix membranes

机译:混合基质膜中的MIL-53骨架

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The MIL-53 metal organic framework (MOF) is known to change reversibly from an open-pore framework (MIL-53-ht) to a closed-pore framework (MIL-53-lt) depending on the temperature, pressure, or guest molecules absorbed. Three frameworks of the additive, MIL-53-as synthesized (MIL-53-as), MIL-53-ht, and MIL-53-lt, were prepared, characterized, and combined with Matrimid (R) to form mixed-matrix membranes (MMMs) for gas separations. The MIL-53-ht/Matrimid (R) MMMs exhibited higher values of permeability compared to Matrimid (R) as well as an increased CO2/CH4 selectivity suggesting that the open-pore MIL-53 framework was maintained in the polymer matrix. In addition to higher permeability values, MIL-53-as/Matrimid (R) MMMs showed higher selectivity for gas pairs with kinetic diameters differing by >= 0.5 angstrom, including H-2/O-2, CO2/CH4, H-2/CH4, and H-2/N-2, suggesting the presence of excess benzene dicarboxylic acid molecules within the pores that reduced its diameter enabling the material to discriminate between smaller and larger gases. MIL-53-lt did not retain its closed-pore form in the MMM. Rather, it irreversibly converted to the open-pore form (MIL-53-ht) due to the exchange of water present in the MIL-53 pores with chloroform solvent molecules during membrane casting and to pore penetration and confinement by Matrimid (R) polymer chains. This finding, that a polymer matrix stabilizes a MOF pore architecture within an MMM, is significant in that the desired selectivity of a MOF-MMM system may be achievable. (C) 2014 Elsevier Inc. All rights reserved.
机译:已知MIL-53金属有机骨架(MOF)根据温度,压力或客体可逆地从开孔骨架(MIL-53-ht)变为闭孔骨架(MIL-53-lt)分子被吸收。制备,表征了添加剂的三种骨架,MIL-53-as(MIL-53-as),MIL-53-ht和MIL-53-lt,并与Matrimid®结合形成混合基质膜(MMM)用于气体分离。与Matrimid(R)相比,MIL-53-ht / Matrimid(R)的MMMs表现出更高的渗透率值,并具有更高的CO2 / CH4选择性,表明在聚合物基质中保持了开孔MIL-53骨架。除了较高的渗透率值以外,MIL-53-as / Matrimid(R)MMM对动力学直径相差大于等于0.5埃的气体对表现出更高的选择性,包​​括H-2 / O-2,CO2 / CH4,H-2 / CH4和H-2 / N-2,表明孔中存在过量的苯二羧酸分子,从而减小了其直径,从而使该材料能够区分较大和较小的气体。 MIL-53-lt在MMM中没有保留其闭孔形式。相反,由于在膜浇铸过程中MIL-53孔中存在的水与氯仿溶剂分子交换,并且通过Matrimid(R)聚合物渗透和限制了孔,因此不可逆地转换为开孔形式(MIL-53-ht)链。聚合物基质稳定MMM内MOF孔结构的这一发现很重要,因为可以实现MOF-MMM系统所需的选择性。 (C)2014 Elsevier Inc.保留所有权利。

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