4.8 Article

Microporous membranes comprising conjugated polymers with rigid backbones enable ultrafast organic-solvent nanofiltration

期刊

NATURE CHEMISTRY
卷 10, 期 9, 页码 961-967

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41557-018-0093-9

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资金

  1. National Key Basic Research Program of China [2014CB931801, 2016YFA0200700]
  2. National Natural Science Foundation of China [51472054, 21475029, 91427302, 21721002, 11422215, 11672079]
  3. Frontier Science Key Project of the Chinese Academy of Sciences [QYZDJ-SSW-SLH038]
  4. Instrument Developing Project of the Chinese Academy of Sciences [YZ201311]
  5. CAS-CSIRO Cooperative Research Program [GJHZ1503]
  6. Strategic Priority Research Program of the Chinese Academy of Sciences [XDA09040100]
  7. K. C. Wong Education Foundation
  8. Youth Innovation Promotion Association CAS

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Conventional technology for the purification of organic solvents requires massive energy consumption, and to reduce such expending calls for efficient filtration membranes capable of high retention of large molecular solutes and high permeance for solvents. Herein, we report a surface-initiated polymerization strategy through C-C coupling reactions for preparing conjugated microporous polymer (CMP) membranes. The backbone of the membranes consists of all-rigid conjugated systems and shows high resistance to organic solvents. We show that 42-nm-thick CMP membranes supported on polyacrylonitrile substrates provide excellent retention of solutes and broad-spectrum nanofiltration in both non-polar hexane and polar methanol, the permeance for which reaches 32 and 22 l m(-2) h(-1) bar(-1), respectively. Both experiments and simulations suggest that the performance of CMP membranes originates from substantially open and interconnected voids formed in the highly rigid networks.

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