4.8 Article

Ultrafast water permeation through nanochannels with a densely fluorous interior surface

期刊

SCIENCE
卷 376, 期 6594, 页码 738-+

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AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.abd0966

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资金

  1. JSPS [21H01903, 18H05260]
  2. JST, PRESTO [JPMJPR21Q1]
  3. Grants-in-Aid for Scientific Research [21H01903] Funding Source: KAKEN

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This study reports a novel fluorous nanochannel that exhibits a water permeation flux two orders of magnitude higher than that of aquaporins and carbon nanotubes. The hydrophobic interior surface of this nanochannel provides a powerful electrostatic barrier, resulting in nearly perfect salt reflectance. Hence, it holds significant potential for applications in desalination.
Ultrafast water permeation in aquaporins is promoted by their hydrophobic interior surface. Polytetrafluoroethylene has a dense fluorine surface, leading to its strong water repellence. We report a series of fluorous oligoamide nanorings with interior diameters ranging from 0.9 to 1.9 nanometers. These nanorings undergo supramolecular polymerization in phospholipid bilayer membranes to form fluorous nanochannels, the interior walls of which are densely covered with fluorine atoms. The nanochannel with the smallest diameter exhibits a water permeation flux that is two orders of magnitude greater than those of aquaporins and carbon nanotubes. The proposed nanochannel exhibits negligible chloride ion (Cl-) permeability caused by a powerful electrostatic barrier provided by the electrostatically negative fluorous interior surface. Thus, this nanochannel is expected to show nearly perfect salt reflectance for desalination.

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