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Carbon-doped metal oxide interfacial nanofilms for ultrafast and precise separation of molecules

  • Bratin Sengupta
  • , Qiaobei Dong
  • , Rajan Khadka
  • , Dinesh Kumar Behera
  • , Ruizhe Yang
  • , Jun Liu
  • , Ji Jiang
  • , Pawel Keblinski
  • , Georges Belfort
  • , Miao Yu

Research output: Contribution to journalArticlepeer-review

76 Scopus citations

Abstract

Membranes with molecular-sized, high-density nanopores, which are stable under industrially relevant conditions, are needed to decrease energy consumption for separations. Interfacial polymerization has demonstrated its potential for large-scale production of organic membranes, such as polyamide desalination membranes. We report an analogous ultrafast interfacial process to generate inorganic, nanoporous carbon-doped metal oxide (CDTO) nanofilms for precise molecular separation. For a given pore size, these nanofilms have 2 to 10 times higher pore density (assuming the same tortuosity) than reported and commercial organic solvent nanofiltration membranes, yielding ultra-high solvent permeance, even if they are thicker. Owing to exceptional mechanical, chemical, and thermal stabilities, CDTO nanofilms with designable, rigid nanopores exhibited long-term stable and efficient organic separation under harsh conditions.

Original languageEnglish
Pages (from-to)1098-1104
Number of pages7
JournalScience
Volume381
Issue number6662
Early online dateSep 7 2023
DOIs
StatePublished - Sep 8 2023
Externally publishedYes

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