Accelerating Membrane-based CO2 Separation by Soluble Nanoporous Polymer Networks Produced by Mechanochemical Oxidative Coupling

Xiang Zhu, Yinying Hua, Chengcheng Tian, Carter W. Abney, Peng Zhang, Tian Jin, Gongping Liu, Katie L. Browning, Robert L. Sacci, Gabriel M. Veith, Hong Cai Zhou, Wanqin Jin, Sheng Dai

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44 引用 (Scopus)

摘要

Achieving homogeneous dispersion of nanoporous fillers within membrane architectures remains a great challenge for mixed-matrix membrane (MMMs) technology. Imparting solution processability of nanoporous materials would help advance the development of MMMs for membrane-based gas separations. A mechanochemically assisted oxidative coupling polymerization strategy was used to create a new family of soluble nanoporous polymer networks. The solid-state ball-milling method affords inherent molecular weight control over polymer growth and therefore provides unexpected solubility for the resulting nanoporous frameworks. MMM-based CO2/CH4 separation performance was significantly accelerated by these new soluble fillers. We anticipate this facile method will facilitate new possibilities for the rational design and synthesis of soluble nanoporous polymer networks and promote their applications in membrane-based gas separations.

源语言英语
页(从-至)2816-2821
页数6
期刊Angewandte Chemie - International Edition
57
11
DOI
出版状态已出版 - 5 3月 2018

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