Department of Mechanical Engineering , Massachusetts Institute of Technology , Cambridge 02139 , Massachusetts , United States.
School of Chemical Engineering and Technology , Sun Yat-Sen University , Zhuhai 519082 , China.
ACS Appl Mater Interfaces. 2019 Feb 6;11(5):5570-5577. doi: 10.1021/acsami.8b20570. Epub 2019 Jan 24.
Pure metal-organic framework (MOF) layers deposited on porous supports are important candidates for molecular sieving membranes, but their performance usually deviates from theoretical estimations. Here, we combine step-wise scanning electron microscopy imaging, time-resolved synchrotron X-ray scattering, terahertz infrared spectroscopy, and density functional theory calculation to investigate the ZIF-8 membrane formation on two types (polydopamine and TiO) of functionalized porous supports. Though molecular sieving of ZIF-8 membranes for smaller gases (He, H, and CO) can be achieved with both types of functionalized supports, we unravel that the strong interaction between MOF and polydopamine can disrupt the formation of "perfect" MOF crystals at the interface, leading to a "contracted" MOF structure with partially uncoordinated imidazolate ligands. This further affects the low-frequency dynamical parameters of the framework and inhibits the effective seeded growth. Eventually, it leads to an unexpected loss of selectivity for the bulkier gases (N and CH) for ZIF-8 on polydopamine-functionalized supports. This work links the dynamical aspects of MOFs with their gas transport behavior and highlights the importance of regulating the interfacial weak forces to preserve the ideal molecular sieving efficiency of MOF membranes, which also provides guidance for defect engineering of MOF film fabrication for sensing and electronic devices beyond membranes.
纯金属有机骨架(MOF)层沉积在多孔载体上是分子筛膜的重要候选材料,但它们的性能通常与理论预测存在偏差。在这里,我们结合逐步扫描电子显微镜成像、时间分辨同步加速器 X 射线散射、太赫兹红外光谱和密度泛函理论计算,研究了两种功能化多孔载体(多巴胺和 TiO)上 ZIF-8 膜的形成。虽然两种功能化载体都可以实现较小气体(He、H 和 CO)的分子筛分离,但我们揭示了 MOF 与多巴胺之间的强相互作用会破坏界面处“完美”MOF 晶体的形成,导致部分配位咪唑配体的“收缩”MOF 结构。这进一步影响了骨架的低频动力学参数,并抑制了有效种子生长。最终,对于在多巴胺功能化载体上的 ZIF-8,其对较大气体(N 和 CH)的选择性出乎意料地降低。这项工作将 MOFs 的动力学方面与其气体输运行为联系起来,并强调了调节界面弱力以保持 MOF 膜理想分子筛效率的重要性,这也为超越膜的传感和电子器件的 MOF 薄膜制造的缺陷工程提供了指导。