Highly flexible and superhydrophobic MOF nanosheet membrane for ultrafast alcohol-water separation

Author:

Xu Li-Hao1ORCID,Li Shen-Hui1ORCID,Mao Heng1,Li Yan1,Zhang Ao-Shuai1,Wang Sen1ORCID,Liu Wei-Min1,Lv Jing1,Wang Tao1,Cai Wei-Wei1ORCID,Sang Le1ORCID,Xie Wen-Wen1,Pei Chan1,Li Zheng-Zheng1,Feng Ying-Nan1ORCID,Zhao Zhi-Ping1ORCID

Affiliation:

1. School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing 102488, P.R. China.

Abstract

High-performance pervaporation membranes have potential in industrial separation applications, but overcoming the permeability-selectivity trade-off is a challenge. We report a strategy to create highly flexible metal-organic framework nanosheet (MOF-NS) membranes with a faveolate structure on polymer substrates for alcohol-water separation. The controlled growth followed by a surface-coating method effectively produced flexible and defect-free superhydrophobic MOF-NS membranes. The reversible deformation of the flexible MOF-NS and the vertical interlamellar pathways were captured with electron microscopy. Molecular simulations confirmed the structure and revealed transport mechanism. The ultrafast transport channels in MOF-NS exhibited an ultrahigh flux and a separation factor of 8.9 in the pervaporation of 5 weight % ethanol-water at 40°C, which can be used for biofuel recovery. MOF-NS and polydimethylsiloxane synergistically contribute to the separation performance.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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