Coordination-Driven In Situ Self-Assembly Strategy for the Preparation of Metal-Organic Framework Hybrid Membranes

Metal–organic frameworks (MOFs) have emerged as porous solids of a superior type for the fabrication of membranes. However, it is still challenging to prepare a uniformly dispersed robust MOF hybrid membrane. Herein, we propose a simple and powerful strategy, namely, coordination‐driven in situ self...

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Published inAngewandte Chemie International Edition Vol. 53; no. 37; pp. 9775 - 9779
Main Authors Zhang, Rong, Ji, Shulan, Wang, Naixin, Wang, Lin, Zhang, Guojun, Li, Jian-Rong
Format Journal Article
LanguageEnglish
Published Weinheim WILEY-VCH Verlag 08.09.2014
WILEY‐VCH Verlag
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Summary:Metal–organic frameworks (MOFs) have emerged as porous solids of a superior type for the fabrication of membranes. However, it is still challenging to prepare a uniformly dispersed robust MOF hybrid membrane. Herein, we propose a simple and powerful strategy, namely, coordination‐driven in situ self‐assembly, for the fabrication of MOF hybrid membranes. On the basis of the coordination interactions between metal ions and ligands and/or the functional groups of the organic polymer, this method was confirmed to be feasible for the production of a stable membrane with greatly improved MOF‐particle dispersion in and compatibility with the polymer, thus providing outstanding separation ability. As an experimental proof of concept, a high‐quality ZIF‐8/PSS membrane was fabricated that showed excellent performance in the nanofiltration and separation of dyes from water. Mopping up the mess: A hybrid membrane composed of the metal–organic framework (MOF) ZIF‐8 and poly(sodium 4‐styrenesulfonate) was prepared by a coordination‐driven in situ self‐assembly method. The MOF particles were well‐dispersed in the polymer in the resulting stable membrane (see picture), which showed excellent performance in the nanofiltration and separation of dyes from water.
Bibliography:istex:23C4622FCB769164191139DFEBC1B8BB2195F27C
ArticleID:ANIE201403978
We thank Dr. Zhiyong U. Wang of Troy University for helpful discussions. This research was financially supported by the NSFC (No. 21176007, 21271015, 21322601), the Program for New Century Excellent Talents in University (No. NCET-13-0647), the National High Technology Research and Development Program of China (No. 2012AA03A607), and Beijing Municipal Natural Science Foundation (No. 8122010, 2132013).
National High Technology Research and Development Program of China - No. 2012AA03A607
ark:/67375/WNG-38VN42PG-8
Beijing Municipal Natural Science Foundation - No. 8122010; No. 2132013
NSFC - No. 21176007; No. 21271015; No. 21322601
We thank Dr. Zhiyong U. Wang of Troy University for helpful discussions. This research was financially supported by the NSFC (No. 21176007, 21271015, 21322601), the Program for New Century Excellent Talents in University (No. NCET‐13‐0647), the National High Technology Research and Development Program of China (No. 2012AA03A607), and Beijing Municipal Natural Science Foundation (No. 8122010, 2132013).
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ISSN:1433-7851
1521-3773
1521-3773
DOI:10.1002/anie.201403978