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Surface Modification of UiO-66 on Hollow Fibre Membrane for Membrane Distillation.


ABSTRACT: The hydrophobicity of metal-organic frameworks (MOFs) is critical in enhancing the separation process in membrane distillation. Herein, a new superhydrophobic University of Oslo 66 (UiO-66) MOFs was successfully constructed on the top of alumina hollow fibre (AHF) membrane for desalination purposes. The fabrication methodology of the membrane involved in situ growth of pure crystalline UiO-66 on top of AHF and post-synthetic modification by fluorosilane grafting. The resultant membrane was characterised to study the physicochemical properties of the pristine and modified membrane. A superhydrophobic UiO-66 with a contact angle of 163.6° and high liquid entry pressure was obtained by introducing a highly branched fluorocarbon chain while maintaining its crystallinity. As a result, the modified membrane achieved 14.95 L/m2∙h water flux and 99.9% NaCl rejection with low energy consumption in the direct contact membrane distillation process. Furthermore, the high surface energy contributed by UiO-66 is maximised to produce the maximum number of accessible sites for the grafting process. The synergistic effect of surface hydrophobicity and porous UiO-66 membrane in trapping water vapour shows great potential for desalination application.

SUBMITTER: Yusof NF 

PROVIDER: S-EPMC10055739 | biostudies-literature | 2023 Feb

REPOSITORIES: biostudies-literature

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Surface Modification of UiO-66 on Hollow Fibre Membrane for Membrane Distillation.

Yusof Noor Fadilah NF   Raffi Amirul Afiat AA   Yahaya Nur Zhatul Shima NZS   Abas Khairul Hamimah KH   Othman Mohd Hafiz Dzarfan MHD   Jaafar Juhana J   Rahman Mukhlis A MA  

Membranes 20230221 3


The hydrophobicity of metal-organic frameworks (MOFs) is critical in enhancing the separation process in membrane distillation. Herein, a new superhydrophobic University of Oslo 66 (UiO-66) MOFs was successfully constructed on the top of alumina hollow fibre (AHF) membrane for desalination purposes. The fabrication methodology of the membrane involved in situ growth of pure crystalline UiO-66 on top of AHF and post-synthetic modification by fluorosilane grafting. The resultant membrane was chara  ...[more]

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