He Caiyan, Li Shenhui, Jiang Bin, Chen Fang, Hu Wei, Deng Feng
State Key Laboratory of Magnetic Resonance and Atomic and Molecular Physics, National Center for Magnetic Resonance in Wuhan, Wuhan Institute of Physics and Mathematics, Innovation Academy for Precision Measurement of Science and Technology, Chinese Academy of Sciences, Wuhan, Hubei 430071, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
ACS Appl Mater Interfaces. 2023 Aug 9;15(31):37936-37945. doi: 10.1021/acsami.3c07142. Epub 2023 Jul 28.
Experimental characterization of the hydrophobic porous materials at the atomic and molecular levels is of great significance, but exploring their hydrophobicity characteristics and interactions with guest molecules with distinct polarity is still challenging. In this work, solid-state NMR is employed to characterize the surface hydrophobicity and explore the guest solvent permeability in polydimethylsiloxane (PDMS)-coated MIL-53. It was found that the PDMS-coated MIL-53 was hydrophobic to water and infiltrated to methanol, acetone, benzene, toluene, and ethylbenzene solvents. In addition, two types of guest solvents (methanol, acetone, benzene, toluene, and ethylbenzene), inside the pore and outside the pore of PDMS-coated MIL-53, were clearly identified using two-dimensional H-H homo-nuclear correlation NMR experiments. Moreover, the membrane thickness of the PDMS-coated MIL-53 could be determined from the analysis of the H-H spin diffusion buildup curves. Furthermore, the permeability of benzene, toluene, and ethylbenzene at different PDMS coating levels was extracted from H MAS NMR. The increase of the hydrophobic PDMS layer resulted in a decrease of the penetration of aromatic guests to the internal pore of MIL-53. This work provides deep insights into the understanding of guest solvent permeability of hydrophobic layer-coated MOFs in the application fields of catalysis and separation.
在原子和分子水平上对疏水多孔材料进行实验表征具有重要意义,但探索其疏水性特征以及与具有不同极性的客体分子之间的相互作用仍然具有挑战性。在这项工作中,采用固态核磁共振来表征表面疏水性,并探索聚二甲基硅氧烷(PDMS)包覆的MIL-53中客体溶剂的渗透性。结果发现,PDMS包覆的MIL-53对水具有疏水性,并且能渗透到甲醇、丙酮、苯、甲苯和乙苯等溶剂中。此外,通过二维H-H同核相关核磁共振实验,清晰地识别出了PDMS包覆的MIL-53孔内和孔外的两种类型的客体溶剂(甲醇、丙酮、苯、甲苯和乙苯)。而且,通过对H-H自旋扩散累积曲线的分析,可以确定PDMS包覆的MIL-53的膜厚度。此外,从H MAS NMR中提取了不同PDMS涂层水平下苯、甲苯和乙苯的渗透率。疏水性PDMS层的增加导致芳香族客体向MIL-53内部孔道的渗透减少。这项工作为理解疏水层包覆的金属有机框架在催化和分离应用领域中客体溶剂的渗透性提供了深刻见解。