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Hydrogen-bonded organic frameworks in solution enables continuous and high-crystalline membranes

Author

Listed:
  • Qi Yin

    (Chinese Academy of Sciences)

  • Kuan Pang

    (Chinese Academy of Sciences
    University of Chinese Academy of Sciences)

  • Ya-Nan Feng

    (Chinese Academy of Sciences)

  • Lili Han

    (Chinese Academy of Sciences)

  • Ali Morsali

    (Tarbiat Modares University)

  • Xi-Ya Li

    (Chinese Academy of Sciences)

  • Tian-Fu Liu

    (Chinese Academy of Sciences
    University of Chinese Academy of Sciences)

Abstract

Hydrogen-Bonded organic frameworks (HOFs) are a type of emerging porous materials. At present, little research has been conducted on their solution state. This work demonstrates that HOFs fragment into small particles while maintaining their original assemblies upon dispersing in solvents, as confirmed by Cryo-electron microscopy coupled with 3D electron diffraction technology. 1D and 2D-Nuclear Magnetic Resonance (NMR) and zeta potential analyses indicate the HOF-based colloid solution and the isolated molecular solution have significant differences in intermolecular interactions and aggregation behavior. Such unique solution processibility allows for fabricating diverse continuous HOF membranes with high crystallinity and porosity through solution-casting approach on various substrates. Among them, HOF-BTB@AAO membranes show high C3H6 permeance (1.979 × 10−7 mol·s−1·m−2·Pa−1) and excellent separation performance toward C3H6 and C3H8 (SF = 14). This continuous membrane presents a green, low-cost, and efficient separation technology with potential applications in petroleum cracking and purification.

Suggested Citation

  • Qi Yin & Kuan Pang & Ya-Nan Feng & Lili Han & Ali Morsali & Xi-Ya Li & Tian-Fu Liu, 2024. "Hydrogen-bonded organic frameworks in solution enables continuous and high-crystalline membranes," Nature Communications, Nature, vol. 15(1), pages 1-6, December.
  • Handle: RePEc:nat:natcom:v:15:y:2024:i:1:d:10.1038_s41467-024-44921-z
    DOI: 10.1038/s41467-024-44921-z
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